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The Official Newspaper of the AGA Institute
gambling
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Daech
drug paraphernalia
explosion
gun
human trafficking
ISIL
ISIS
Islamic caliphate
Islamic state
mixed martial arts
MMA
molestation
national rifle association
NRA
nsfw
pedophile
pedophilia
poker
porn
pornography
psychedelic drug
recreational drug
sex slave rings
slot machine
terrorism
terrorist
Texas hold 'em
UFC
substance abuse
abuseed
abuseer
abusees
abuseing
abusely
abuses
aeolus
aeolused
aeoluser
aeoluses
aeolusing
aeolusly
aeoluss
ahole
aholeed
aholeer
aholees
aholeing
aholely
aholes
alcohol
alcoholed
alcoholer
alcoholes
alcoholing
alcoholly
alcohols
allman
allmaned
allmaner
allmanes
allmaning
allmanly
allmans
alted
altes
alting
altly
alts
analed
analer
anales
analing
anally
analprobe
analprobeed
analprobeer
analprobees
analprobeing
analprobely
analprobes
anals
anilingus
anilingused
anilinguser
anilinguses
anilingusing
anilingusly
anilinguss
anus
anused
anuser
anuses
anusing
anusly
anuss
areola
areolaed
areolaer
areolaes
areolaing
areolaly
areolas
areole
areoleed
areoleer
areolees
areoleing
areolely
areoles
arian
arianed
arianer
arianes
arianing
arianly
arians
aryan
aryaned
aryaner
aryanes
aryaning
aryanly
aryans
asiaed
asiaer
asiaes
asiaing
asialy
asias
ass
ass hole
ass lick
ass licked
ass licker
ass lickes
ass licking
ass lickly
ass licks
assbang
assbanged
assbangeded
assbangeder
assbangedes
assbangeding
assbangedly
assbangeds
assbanger
assbanges
assbanging
assbangly
assbangs
assbangsed
assbangser
assbangses
assbangsing
assbangsly
assbangss
assed
asser
asses
assesed
asseser
asseses
assesing
assesly
assess
assfuck
assfucked
assfucker
assfuckered
assfuckerer
assfuckeres
assfuckering
assfuckerly
assfuckers
assfuckes
assfucking
assfuckly
assfucks
asshat
asshated
asshater
asshates
asshating
asshatly
asshats
assholeed
assholeer
assholees
assholeing
assholely
assholes
assholesed
assholeser
assholeses
assholesing
assholesly
assholess
assing
assly
assmaster
assmastered
assmasterer
assmasteres
assmastering
assmasterly
assmasters
assmunch
assmunched
assmuncher
assmunches
assmunching
assmunchly
assmunchs
asss
asswipe
asswipeed
asswipeer
asswipees
asswipeing
asswipely
asswipes
asswipesed
asswipeser
asswipeses
asswipesing
asswipesly
asswipess
azz
azzed
azzer
azzes
azzing
azzly
azzs
babeed
babeer
babees
babeing
babely
babes
babesed
babeser
babeses
babesing
babesly
babess
ballsac
ballsaced
ballsacer
ballsaces
ballsacing
ballsack
ballsacked
ballsacker
ballsackes
ballsacking
ballsackly
ballsacks
ballsacly
ballsacs
ballsed
ballser
ballses
ballsing
ballsly
ballss
barf
barfed
barfer
barfes
barfing
barfly
barfs
bastard
bastarded
bastarder
bastardes
bastarding
bastardly
bastards
bastardsed
bastardser
bastardses
bastardsing
bastardsly
bastardss
bawdy
bawdyed
bawdyer
bawdyes
bawdying
bawdyly
bawdys
beaner
beanered
beanerer
beaneres
beanering
beanerly
beaners
beardedclam
beardedclamed
beardedclamer
beardedclames
beardedclaming
beardedclamly
beardedclams
beastiality
beastialityed
beastialityer
beastialityes
beastialitying
beastialityly
beastialitys
beatch
beatched
beatcher
beatches
beatching
beatchly
beatchs
beater
beatered
beaterer
beateres
beatering
beaterly
beaters
beered
beerer
beeres
beering
beerly
beeyotch
beeyotched
beeyotcher
beeyotches
beeyotching
beeyotchly
beeyotchs
beotch
beotched
beotcher
beotches
beotching
beotchly
beotchs
biatch
biatched
biatcher
biatches
biatching
biatchly
biatchs
big tits
big titsed
big titser
big titses
big titsing
big titsly
big titss
bigtits
bigtitsed
bigtitser
bigtitses
bigtitsing
bigtitsly
bigtitss
bimbo
bimboed
bimboer
bimboes
bimboing
bimboly
bimbos
bisexualed
bisexualer
bisexuales
bisexualing
bisexually
bisexuals
bitch
bitched
bitcheded
bitcheder
bitchedes
bitcheding
bitchedly
bitcheds
bitcher
bitches
bitchesed
bitcheser
bitcheses
bitchesing
bitchesly
bitchess
bitching
bitchly
bitchs
bitchy
bitchyed
bitchyer
bitchyes
bitchying
bitchyly
bitchys
bleached
bleacher
bleaches
bleaching
bleachly
bleachs
blow job
blow jobed
blow jober
blow jobes
blow jobing
blow jobly
blow jobs
blowed
blower
blowes
blowing
blowjob
blowjobed
blowjober
blowjobes
blowjobing
blowjobly
blowjobs
blowjobsed
blowjobser
blowjobses
blowjobsing
blowjobsly
blowjobss
blowly
blows
boink
boinked
boinker
boinkes
boinking
boinkly
boinks
bollock
bollocked
bollocker
bollockes
bollocking
bollockly
bollocks
bollocksed
bollockser
bollockses
bollocksing
bollocksly
bollockss
bollok
bolloked
bolloker
bollokes
bolloking
bollokly
bolloks
boner
bonered
bonerer
boneres
bonering
bonerly
boners
bonersed
bonerser
bonerses
bonersing
bonersly
bonerss
bong
bonged
bonger
bonges
bonging
bongly
bongs
boob
boobed
boober
boobes
boobies
boobiesed
boobieser
boobieses
boobiesing
boobiesly
boobiess
boobing
boobly
boobs
boobsed
boobser
boobses
boobsing
boobsly
boobss
booby
boobyed
boobyer
boobyes
boobying
boobyly
boobys
booger
boogered
boogerer
boogeres
boogering
boogerly
boogers
bookie
bookieed
bookieer
bookiees
bookieing
bookiely
bookies
bootee
booteeed
booteeer
booteees
booteeing
booteely
bootees
bootie
bootieed
bootieer
bootiees
bootieing
bootiely
booties
booty
bootyed
bootyer
bootyes
bootying
bootyly
bootys
boozeed
boozeer
boozees
boozeing
boozely
boozer
boozered
boozerer
boozeres
boozering
boozerly
boozers
boozes
boozy
boozyed
boozyer
boozyes
boozying
boozyly
boozys
bosomed
bosomer
bosomes
bosoming
bosomly
bosoms
bosomy
bosomyed
bosomyer
bosomyes
bosomying
bosomyly
bosomys
bugger
buggered
buggerer
buggeres
buggering
buggerly
buggers
bukkake
bukkakeed
bukkakeer
bukkakees
bukkakeing
bukkakely
bukkakes
bull shit
bull shited
bull shiter
bull shites
bull shiting
bull shitly
bull shits
bullshit
bullshited
bullshiter
bullshites
bullshiting
bullshitly
bullshits
bullshitsed
bullshitser
bullshitses
bullshitsing
bullshitsly
bullshitss
bullshitted
bullshitteded
bullshitteder
bullshittedes
bullshitteding
bullshittedly
bullshitteds
bullturds
bullturdsed
bullturdser
bullturdses
bullturdsing
bullturdsly
bullturdss
bung
bunged
bunger
bunges
bunging
bungly
bungs
busty
bustyed
bustyer
bustyes
bustying
bustyly
bustys
butt
butt fuck
butt fucked
butt fucker
butt fuckes
butt fucking
butt fuckly
butt fucks
butted
buttes
buttfuck
buttfucked
buttfucker
buttfuckered
buttfuckerer
buttfuckeres
buttfuckering
buttfuckerly
buttfuckers
buttfuckes
buttfucking
buttfuckly
buttfucks
butting
buttly
buttplug
buttpluged
buttpluger
buttpluges
buttpluging
buttplugly
buttplugs
butts
caca
cacaed
cacaer
cacaes
cacaing
cacaly
cacas
cahone
cahoneed
cahoneer
cahonees
cahoneing
cahonely
cahones
cameltoe
cameltoeed
cameltoeer
cameltoees
cameltoeing
cameltoely
cameltoes
carpetmuncher
carpetmunchered
carpetmuncherer
carpetmuncheres
carpetmunchering
carpetmuncherly
carpetmunchers
cawk
cawked
cawker
cawkes
cawking
cawkly
cawks
chinc
chinced
chincer
chinces
chincing
chincly
chincs
chincsed
chincser
chincses
chincsing
chincsly
chincss
chink
chinked
chinker
chinkes
chinking
chinkly
chinks
chode
chodeed
chodeer
chodees
chodeing
chodely
chodes
chodesed
chodeser
chodeses
chodesing
chodesly
chodess
clit
clited
cliter
clites
cliting
clitly
clitoris
clitorised
clitoriser
clitorises
clitorising
clitorisly
clitoriss
clitorus
clitorused
clitoruser
clitoruses
clitorusing
clitorusly
clitoruss
clits
clitsed
clitser
clitses
clitsing
clitsly
clitss
clitty
clittyed
clittyer
clittyes
clittying
clittyly
clittys
cocain
cocaine
cocained
cocaineed
cocaineer
cocainees
cocaineing
cocainely
cocainer
cocaines
cocaining
cocainly
cocains
cock
cock sucker
cock suckered
cock suckerer
cock suckeres
cock suckering
cock suckerly
cock suckers
cockblock
cockblocked
cockblocker
cockblockes
cockblocking
cockblockly
cockblocks
cocked
cocker
cockes
cockholster
cockholstered
cockholsterer
cockholsteres
cockholstering
cockholsterly
cockholsters
cocking
cockknocker
cockknockered
cockknockerer
cockknockeres
cockknockering
cockknockerly
cockknockers
cockly
cocks
cocksed
cockser
cockses
cocksing
cocksly
cocksmoker
cocksmokered
cocksmokerer
cocksmokeres
cocksmokering
cocksmokerly
cocksmokers
cockss
cocksucker
cocksuckered
cocksuckerer
cocksuckeres
cocksuckering
cocksuckerly
cocksuckers
coital
coitaled
coitaler
coitales
coitaling
coitally
coitals
commie
commieed
commieer
commiees
commieing
commiely
commies
condomed
condomer
condomes
condoming
condomly
condoms
coon
cooned
cooner
coones
cooning
coonly
coons
coonsed
coonser
coonses
coonsing
coonsly
coonss
corksucker
corksuckered
corksuckerer
corksuckeres
corksuckering
corksuckerly
corksuckers
cracked
crackwhore
crackwhoreed
crackwhoreer
crackwhorees
crackwhoreing
crackwhorely
crackwhores
crap
craped
craper
crapes
craping
craply
crappy
crappyed
crappyer
crappyes
crappying
crappyly
crappys
cum
cumed
cumer
cumes
cuming
cumly
cummin
cummined
cumminer
cummines
cumming
cumminged
cumminger
cumminges
cumminging
cummingly
cummings
cummining
cumminly
cummins
cums
cumshot
cumshoted
cumshoter
cumshotes
cumshoting
cumshotly
cumshots
cumshotsed
cumshotser
cumshotses
cumshotsing
cumshotsly
cumshotss
cumslut
cumsluted
cumsluter
cumslutes
cumsluting
cumslutly
cumsluts
cumstain
cumstained
cumstainer
cumstaines
cumstaining
cumstainly
cumstains
cunilingus
cunilingused
cunilinguser
cunilinguses
cunilingusing
cunilingusly
cunilinguss
cunnilingus
cunnilingused
cunnilinguser
cunnilinguses
cunnilingusing
cunnilingusly
cunnilinguss
cunny
cunnyed
cunnyer
cunnyes
cunnying
cunnyly
cunnys
cunt
cunted
cunter
cuntes
cuntface
cuntfaceed
cuntfaceer
cuntfacees
cuntfaceing
cuntfacely
cuntfaces
cunthunter
cunthuntered
cunthunterer
cunthunteres
cunthuntering
cunthunterly
cunthunters
cunting
cuntlick
cuntlicked
cuntlicker
cuntlickered
cuntlickerer
cuntlickeres
cuntlickering
cuntlickerly
cuntlickers
cuntlickes
cuntlicking
cuntlickly
cuntlicks
cuntly
cunts
cuntsed
cuntser
cuntses
cuntsing
cuntsly
cuntss
dago
dagoed
dagoer
dagoes
dagoing
dagoly
dagos
dagosed
dagoser
dagoses
dagosing
dagosly
dagoss
dammit
dammited
dammiter
dammites
dammiting
dammitly
dammits
damn
damned
damneded
damneder
damnedes
damneding
damnedly
damneds
damner
damnes
damning
damnit
damnited
damniter
damnites
damniting
damnitly
damnits
damnly
damns
dick
dickbag
dickbaged
dickbager
dickbages
dickbaging
dickbagly
dickbags
dickdipper
dickdippered
dickdipperer
dickdipperes
dickdippering
dickdipperly
dickdippers
dicked
dicker
dickes
dickface
dickfaceed
dickfaceer
dickfacees
dickfaceing
dickfacely
dickfaces
dickflipper
dickflippered
dickflipperer
dickflipperes
dickflippering
dickflipperly
dickflippers
dickhead
dickheaded
dickheader
dickheades
dickheading
dickheadly
dickheads
dickheadsed
dickheadser
dickheadses
dickheadsing
dickheadsly
dickheadss
dicking
dickish
dickished
dickisher
dickishes
dickishing
dickishly
dickishs
dickly
dickripper
dickrippered
dickripperer
dickripperes
dickrippering
dickripperly
dickrippers
dicks
dicksipper
dicksippered
dicksipperer
dicksipperes
dicksippering
dicksipperly
dicksippers
dickweed
dickweeded
dickweeder
dickweedes
dickweeding
dickweedly
dickweeds
dickwhipper
dickwhippered
dickwhipperer
dickwhipperes
dickwhippering
dickwhipperly
dickwhippers
dickzipper
dickzippered
dickzipperer
dickzipperes
dickzippering
dickzipperly
dickzippers
diddle
diddleed
diddleer
diddlees
diddleing
diddlely
diddles
dike
dikeed
dikeer
dikees
dikeing
dikely
dikes
dildo
dildoed
dildoer
dildoes
dildoing
dildoly
dildos
dildosed
dildoser
dildoses
dildosing
dildosly
dildoss
diligaf
diligafed
diligafer
diligafes
diligafing
diligafly
diligafs
dillweed
dillweeded
dillweeder
dillweedes
dillweeding
dillweedly
dillweeds
dimwit
dimwited
dimwiter
dimwites
dimwiting
dimwitly
dimwits
dingle
dingleed
dingleer
dinglees
dingleing
dinglely
dingles
dipship
dipshiped
dipshiper
dipshipes
dipshiping
dipshiply
dipships
dizzyed
dizzyer
dizzyes
dizzying
dizzyly
dizzys
doggiestyleed
doggiestyleer
doggiestylees
doggiestyleing
doggiestylely
doggiestyles
doggystyleed
doggystyleer
doggystylees
doggystyleing
doggystylely
doggystyles
dong
donged
donger
donges
donging
dongly
dongs
doofus
doofused
doofuser
doofuses
doofusing
doofusly
doofuss
doosh
dooshed
doosher
dooshes
dooshing
dooshly
dooshs
dopeyed
dopeyer
dopeyes
dopeying
dopeyly
dopeys
douchebag
douchebaged
douchebager
douchebages
douchebaging
douchebagly
douchebags
douchebagsed
douchebagser
douchebagses
douchebagsing
douchebagsly
douchebagss
doucheed
doucheer
douchees
doucheing
douchely
douches
douchey
doucheyed
doucheyer
doucheyes
doucheying
doucheyly
doucheys
drunk
drunked
drunker
drunkes
drunking
drunkly
drunks
dumass
dumassed
dumasser
dumasses
dumassing
dumassly
dumasss
dumbass
dumbassed
dumbasser
dumbasses
dumbassesed
dumbasseser
dumbasseses
dumbassesing
dumbassesly
dumbassess
dumbassing
dumbassly
dumbasss
dummy
dummyed
dummyer
dummyes
dummying
dummyly
dummys
dyke
dykeed
dykeer
dykees
dykeing
dykely
dykes
dykesed
dykeser
dykeses
dykesing
dykesly
dykess
erotic
eroticed
eroticer
erotices
eroticing
eroticly
erotics
extacy
extacyed
extacyer
extacyes
extacying
extacyly
extacys
extasy
extasyed
extasyer
extasyes
extasying
extasyly
extasys
fack
facked
facker
fackes
facking
fackly
facks
fag
faged
fager
fages
fagg
fagged
faggeded
faggeder
faggedes
faggeding
faggedly
faggeds
fagger
fagges
fagging
faggit
faggited
faggiter
faggites
faggiting
faggitly
faggits
faggly
faggot
faggoted
faggoter
faggotes
faggoting
faggotly
faggots
faggs
faging
fagly
fagot
fagoted
fagoter
fagotes
fagoting
fagotly
fagots
fags
fagsed
fagser
fagses
fagsing
fagsly
fagss
faig
faiged
faiger
faiges
faiging
faigly
faigs
faigt
faigted
faigter
faigtes
faigting
faigtly
faigts
fannybandit
fannybandited
fannybanditer
fannybandites
fannybanditing
fannybanditly
fannybandits
farted
farter
fartes
farting
fartknocker
fartknockered
fartknockerer
fartknockeres
fartknockering
fartknockerly
fartknockers
fartly
farts
felch
felched
felcher
felchered
felcherer
felcheres
felchering
felcherly
felchers
felches
felching
felchinged
felchinger
felchinges
felchinging
felchingly
felchings
felchly
felchs
fellate
fellateed
fellateer
fellatees
fellateing
fellately
fellates
fellatio
fellatioed
fellatioer
fellatioes
fellatioing
fellatioly
fellatios
feltch
feltched
feltcher
feltchered
feltcherer
feltcheres
feltchering
feltcherly
feltchers
feltches
feltching
feltchly
feltchs
feom
feomed
feomer
feomes
feoming
feomly
feoms
fisted
fisteded
fisteder
fistedes
fisteding
fistedly
fisteds
fisting
fistinged
fistinger
fistinges
fistinging
fistingly
fistings
fisty
fistyed
fistyer
fistyes
fistying
fistyly
fistys
floozy
floozyed
floozyer
floozyes
floozying
floozyly
floozys
foad
foaded
foader
foades
foading
foadly
foads
fondleed
fondleer
fondlees
fondleing
fondlely
fondles
foobar
foobared
foobarer
foobares
foobaring
foobarly
foobars
freex
freexed
freexer
freexes
freexing
freexly
freexs
frigg
frigga
friggaed
friggaer
friggaes
friggaing
friggaly
friggas
frigged
frigger
frigges
frigging
friggly
friggs
fubar
fubared
fubarer
fubares
fubaring
fubarly
fubars
fuck
fuckass
fuckassed
fuckasser
fuckasses
fuckassing
fuckassly
fuckasss
fucked
fuckeded
fuckeder
fuckedes
fuckeding
fuckedly
fuckeds
fucker
fuckered
fuckerer
fuckeres
fuckering
fuckerly
fuckers
fuckes
fuckface
fuckfaceed
fuckfaceer
fuckfacees
fuckfaceing
fuckfacely
fuckfaces
fuckin
fuckined
fuckiner
fuckines
fucking
fuckinged
fuckinger
fuckinges
fuckinging
fuckingly
fuckings
fuckining
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FDA OKs Linzess for IBS With Constipation in Kids
, making it the first approved treatment for pediatric IBS-C.
The recommended dosage in pediatric patients is 145 mcg/d oral linaclotide.
Linaclotide is already approved in the US for IBS-C in adults, as well as functional constipation in children aged 6 years or older and chronic idiopathic constipation in adults.
IBS-C is common in children and adolescents. Symptoms include infrequent bowel movements with hard stools that can be difficult or painful to pass.
There is no known underlying organic cause and there are typically multiple contributing factors, the FDA said in a statement announcing the approval.
The efficacy of linaclotide to treat IBS-C in children aged 7 years or older was supported by extrapolation of efficacy from studies in adults and a 12-week double-blind, randomized, parallel-group trial in pediatric patients aged 7-17 years who met modified Rome III criteria for child/adolescent IBS-C, the FDA noted.
The primary endpoint was the proportion of patients who achieved at least a 30% reduction in abdominal pain and an increase of at least two naturally occurring bowel movements per week from baseline for at least 6 weeks of the 12-week treatment period.
The efficacy results in children with IBS-C were consistent with results seen in adults with IBS-C, with no new safety signals.
The most common side effect with linaclotide is diarrhea. If severe diarrhea occurs, linaclotide should be discontinued and rehydration started.
Linaclotide is contraindicated in children younger than 2 years. Patients with known or suspected mechanical gastrointestinal obstruction should not take linaclotide.
Full prescribing information is available online.
A version of this article first appeared on Medscape.com.
, making it the first approved treatment for pediatric IBS-C.
The recommended dosage in pediatric patients is 145 mcg/d oral linaclotide.
Linaclotide is already approved in the US for IBS-C in adults, as well as functional constipation in children aged 6 years or older and chronic idiopathic constipation in adults.
IBS-C is common in children and adolescents. Symptoms include infrequent bowel movements with hard stools that can be difficult or painful to pass.
There is no known underlying organic cause and there are typically multiple contributing factors, the FDA said in a statement announcing the approval.
The efficacy of linaclotide to treat IBS-C in children aged 7 years or older was supported by extrapolation of efficacy from studies in adults and a 12-week double-blind, randomized, parallel-group trial in pediatric patients aged 7-17 years who met modified Rome III criteria for child/adolescent IBS-C, the FDA noted.
The primary endpoint was the proportion of patients who achieved at least a 30% reduction in abdominal pain and an increase of at least two naturally occurring bowel movements per week from baseline for at least 6 weeks of the 12-week treatment period.
The efficacy results in children with IBS-C were consistent with results seen in adults with IBS-C, with no new safety signals.
The most common side effect with linaclotide is diarrhea. If severe diarrhea occurs, linaclotide should be discontinued and rehydration started.
Linaclotide is contraindicated in children younger than 2 years. Patients with known or suspected mechanical gastrointestinal obstruction should not take linaclotide.
Full prescribing information is available online.
A version of this article first appeared on Medscape.com.
, making it the first approved treatment for pediatric IBS-C.
The recommended dosage in pediatric patients is 145 mcg/d oral linaclotide.
Linaclotide is already approved in the US for IBS-C in adults, as well as functional constipation in children aged 6 years or older and chronic idiopathic constipation in adults.
IBS-C is common in children and adolescents. Symptoms include infrequent bowel movements with hard stools that can be difficult or painful to pass.
There is no known underlying organic cause and there are typically multiple contributing factors, the FDA said in a statement announcing the approval.
The efficacy of linaclotide to treat IBS-C in children aged 7 years or older was supported by extrapolation of efficacy from studies in adults and a 12-week double-blind, randomized, parallel-group trial in pediatric patients aged 7-17 years who met modified Rome III criteria for child/adolescent IBS-C, the FDA noted.
The primary endpoint was the proportion of patients who achieved at least a 30% reduction in abdominal pain and an increase of at least two naturally occurring bowel movements per week from baseline for at least 6 weeks of the 12-week treatment period.
The efficacy results in children with IBS-C were consistent with results seen in adults with IBS-C, with no new safety signals.
The most common side effect with linaclotide is diarrhea. If severe diarrhea occurs, linaclotide should be discontinued and rehydration started.
Linaclotide is contraindicated in children younger than 2 years. Patients with known or suspected mechanical gastrointestinal obstruction should not take linaclotide.
Full prescribing information is available online.
A version of this article first appeared on Medscape.com.
Chance to Diagnose Eosinophilic Esophagitis in the ED Commonly Missed
PHOENIX — The opportunity to diagnose eosinophilic esophagitis (EoE) when patients present to the emergency department (ED) with the classic symptom of esophageal food impaction (EFI) is commonly missed, with necessary biopsies provided at strikingly low rates, despite guideline recommendations, new research showed.
“This is the first study to assess the rate of biopsies at time of esophageal food impaction in a large, real-world dataset of community practices,” the authors explained in research presented at the American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
The findings underscore that “.”
Research shows patients with EoE, a chronic and progressive type 2 inflammatory disease, have an average delay of 4 years before being diagnosed, with a delay of up to 10 years in about a third of cases. With those delays comes the likelihood of disease progression.
The latest guidelines from the ACG indicate that for diagnosis, “from a practical standpoint,” the preferred approach is to obtain at least two to four biopsies from at least two distinct esophageal areas, while targeting areas of visual inflammation.
However, prior evidence suggests that the biopsies are commonly not performed when patients present with the symptoms of EFI.
To further investigate the management of EFI during and after ED visits in a real-world setting, first author Walker D. Redd, MD, Center for Gastrointestinal Biology and Disease, UNC School of Medicine, Chapel Hill, North Carolina, and colleagues conducted a retrospective cohort study of 2566 patients in a multistate gastrointestinal practice group at 143 care centers in seven US states.
The patients were treated for esophageal food or foreign body removal between 2018 and 2024.
Among them, 1434 patients received evaluation with esophagogastroduodenoscopy (EGD), with 754 having no EGD and 378 receiving EGD for non-EFI.
The patients had a mean age of 63, with nearly 60% being older than 60 years, and 44.9% were women.
At the index EGD, only 19% had records of having esophageal biopsies. Among them, nearly half, 47%, were determined to have biopsy-confirmed EoE.
Of those who did not receive biopsies, only 7% had records of having received a follow-up EGD with an esophageal biopsy within 1 year, with 40% of those having EoE confirmed from a biopsy.
Among the remaining 93% of patients who had no record of such follow-up care within 1 year, 41% were lost to follow-up.
“We found that only about one fifth of patients had esophageal biopsies collected at the time of esophageal food impaction, which is similar to previous reports,” Redd said.
Overall, “esophageal biopsy rates at the time of esophageal food impaction remain low, and follow-up EGD with biopsy rates are also very low.”
Responding to a comment from the audience, Redd agreed that a limitation of the study was the scenario of patients from out of town being treated at an ED and then going back home, where their follow-up status may not be known.
Nevertheless, awareness of the low rates “represent an important opportunity to reduce the diagnostic delay and improve quality of care in EoE,” he said.
Commenting on the study, Danny Issa, MD, an interventional gastroenterologist at UCLA Health, agreed that the low rates of follow-up were troubling.
“Only 1 in 10 is a very low rate of follow-up endoscopy,” he told GI & Hepatology News.
“These results show we need to encourage quality improvement initiatives to make sure those patients are followed up,” he said.
Furthermore, “additional studies are needed to better understand the barriers behind the lack of follow-up, which were not addressed fully in the study.”
Co-moderator Sita S. Chokhavatia, MD, AGAF, a gastroenterologist at Valley Medical Group, in Paramus, New Jersey, added that “the point that needs to be made is that these patients need biopsies so you can diagnose and subsequently treat them.”
Redd reported having a consulting relationship with Sanofi. Issa reported having relationships with Boston Scientific and Eli Lilly. Chokhavatia had no disclosures to report.
A version of this article first appeared on Medscape.com.
PHOENIX — The opportunity to diagnose eosinophilic esophagitis (EoE) when patients present to the emergency department (ED) with the classic symptom of esophageal food impaction (EFI) is commonly missed, with necessary biopsies provided at strikingly low rates, despite guideline recommendations, new research showed.
“This is the first study to assess the rate of biopsies at time of esophageal food impaction in a large, real-world dataset of community practices,” the authors explained in research presented at the American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
The findings underscore that “.”
Research shows patients with EoE, a chronic and progressive type 2 inflammatory disease, have an average delay of 4 years before being diagnosed, with a delay of up to 10 years in about a third of cases. With those delays comes the likelihood of disease progression.
The latest guidelines from the ACG indicate that for diagnosis, “from a practical standpoint,” the preferred approach is to obtain at least two to four biopsies from at least two distinct esophageal areas, while targeting areas of visual inflammation.
However, prior evidence suggests that the biopsies are commonly not performed when patients present with the symptoms of EFI.
To further investigate the management of EFI during and after ED visits in a real-world setting, first author Walker D. Redd, MD, Center for Gastrointestinal Biology and Disease, UNC School of Medicine, Chapel Hill, North Carolina, and colleagues conducted a retrospective cohort study of 2566 patients in a multistate gastrointestinal practice group at 143 care centers in seven US states.
The patients were treated for esophageal food or foreign body removal between 2018 and 2024.
Among them, 1434 patients received evaluation with esophagogastroduodenoscopy (EGD), with 754 having no EGD and 378 receiving EGD for non-EFI.
The patients had a mean age of 63, with nearly 60% being older than 60 years, and 44.9% were women.
At the index EGD, only 19% had records of having esophageal biopsies. Among them, nearly half, 47%, were determined to have biopsy-confirmed EoE.
Of those who did not receive biopsies, only 7% had records of having received a follow-up EGD with an esophageal biopsy within 1 year, with 40% of those having EoE confirmed from a biopsy.
Among the remaining 93% of patients who had no record of such follow-up care within 1 year, 41% were lost to follow-up.
“We found that only about one fifth of patients had esophageal biopsies collected at the time of esophageal food impaction, which is similar to previous reports,” Redd said.
Overall, “esophageal biopsy rates at the time of esophageal food impaction remain low, and follow-up EGD with biopsy rates are also very low.”
Responding to a comment from the audience, Redd agreed that a limitation of the study was the scenario of patients from out of town being treated at an ED and then going back home, where their follow-up status may not be known.
Nevertheless, awareness of the low rates “represent an important opportunity to reduce the diagnostic delay and improve quality of care in EoE,” he said.
Commenting on the study, Danny Issa, MD, an interventional gastroenterologist at UCLA Health, agreed that the low rates of follow-up were troubling.
“Only 1 in 10 is a very low rate of follow-up endoscopy,” he told GI & Hepatology News.
“These results show we need to encourage quality improvement initiatives to make sure those patients are followed up,” he said.
Furthermore, “additional studies are needed to better understand the barriers behind the lack of follow-up, which were not addressed fully in the study.”
Co-moderator Sita S. Chokhavatia, MD, AGAF, a gastroenterologist at Valley Medical Group, in Paramus, New Jersey, added that “the point that needs to be made is that these patients need biopsies so you can diagnose and subsequently treat them.”
Redd reported having a consulting relationship with Sanofi. Issa reported having relationships with Boston Scientific and Eli Lilly. Chokhavatia had no disclosures to report.
A version of this article first appeared on Medscape.com.
PHOENIX — The opportunity to diagnose eosinophilic esophagitis (EoE) when patients present to the emergency department (ED) with the classic symptom of esophageal food impaction (EFI) is commonly missed, with necessary biopsies provided at strikingly low rates, despite guideline recommendations, new research showed.
“This is the first study to assess the rate of biopsies at time of esophageal food impaction in a large, real-world dataset of community practices,” the authors explained in research presented at the American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
The findings underscore that “.”
Research shows patients with EoE, a chronic and progressive type 2 inflammatory disease, have an average delay of 4 years before being diagnosed, with a delay of up to 10 years in about a third of cases. With those delays comes the likelihood of disease progression.
The latest guidelines from the ACG indicate that for diagnosis, “from a practical standpoint,” the preferred approach is to obtain at least two to four biopsies from at least two distinct esophageal areas, while targeting areas of visual inflammation.
However, prior evidence suggests that the biopsies are commonly not performed when patients present with the symptoms of EFI.
To further investigate the management of EFI during and after ED visits in a real-world setting, first author Walker D. Redd, MD, Center for Gastrointestinal Biology and Disease, UNC School of Medicine, Chapel Hill, North Carolina, and colleagues conducted a retrospective cohort study of 2566 patients in a multistate gastrointestinal practice group at 143 care centers in seven US states.
The patients were treated for esophageal food or foreign body removal between 2018 and 2024.
Among them, 1434 patients received evaluation with esophagogastroduodenoscopy (EGD), with 754 having no EGD and 378 receiving EGD for non-EFI.
The patients had a mean age of 63, with nearly 60% being older than 60 years, and 44.9% were women.
At the index EGD, only 19% had records of having esophageal biopsies. Among them, nearly half, 47%, were determined to have biopsy-confirmed EoE.
Of those who did not receive biopsies, only 7% had records of having received a follow-up EGD with an esophageal biopsy within 1 year, with 40% of those having EoE confirmed from a biopsy.
Among the remaining 93% of patients who had no record of such follow-up care within 1 year, 41% were lost to follow-up.
“We found that only about one fifth of patients had esophageal biopsies collected at the time of esophageal food impaction, which is similar to previous reports,” Redd said.
Overall, “esophageal biopsy rates at the time of esophageal food impaction remain low, and follow-up EGD with biopsy rates are also very low.”
Responding to a comment from the audience, Redd agreed that a limitation of the study was the scenario of patients from out of town being treated at an ED and then going back home, where their follow-up status may not be known.
Nevertheless, awareness of the low rates “represent an important opportunity to reduce the diagnostic delay and improve quality of care in EoE,” he said.
Commenting on the study, Danny Issa, MD, an interventional gastroenterologist at UCLA Health, agreed that the low rates of follow-up were troubling.
“Only 1 in 10 is a very low rate of follow-up endoscopy,” he told GI & Hepatology News.
“These results show we need to encourage quality improvement initiatives to make sure those patients are followed up,” he said.
Furthermore, “additional studies are needed to better understand the barriers behind the lack of follow-up, which were not addressed fully in the study.”
Co-moderator Sita S. Chokhavatia, MD, AGAF, a gastroenterologist at Valley Medical Group, in Paramus, New Jersey, added that “the point that needs to be made is that these patients need biopsies so you can diagnose and subsequently treat them.”
Redd reported having a consulting relationship with Sanofi. Issa reported having relationships with Boston Scientific and Eli Lilly. Chokhavatia had no disclosures to report.
A version of this article first appeared on Medscape.com.
FROM ACG 2025
Cholecystectomy Delay Linked to Substantially Increased Complication Risk
, regardless of the receipt of sphincterotomy or stenting, new research showed.
“These findings suggest an opportunity for systemic interventions, including prioritization algorithms and better perioperative coordination, to address preventable delays,” reported the authors in the study, presented at American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
Choledocholithiasis can occur in up to 20% of symptomatic gallstone cases, and while guidelines recommend having a cholecystectomy concurrently with ERCP, data on the best timing is inconsistent and delays in gall bladder removal are consequently common.
One large study, for instance, the PONCHO trial conducted at 23 hospitals in Netherlands, showed complications to be significantly lower with same-admission vs interval cholecystectomy (4.7% vs 16.9%; P = .02).
Meanwhile, other research has suggested that delayed cholecystectomy is a preferred approach, allowing for removal when there is less inflammation.
Real world data meanwhile shows, despite the guidelines, the procedures are performed at the same time as ERCP only in about 41% of cases, first author Jessica El Halabi, MD, of the Johns Hopkins Hospital, Baltimore, said.
To further investigate outcomes associated with those delays, El Halabi and colleagues conducted a retrospective cohort study involving 507 patients admitted with choledocholithiasis at the hospital and community hospitals between 2005 and 2023 who had 12 months or more follow-up.
The patients had a mean age of 59 years and 59.4% were women.
Of the patients, 265 (52.3%) underwent early cholecystectomy, defined as surgery during the index admission, while 242 (47.7%) underwent delayed cholecystectomy, defined as postdischarge cholecystectomy or if cholecystectomy was not performed.
Overall, biliary complications occurred in as many as 23% of those who had delayed cholecystectomy compared with just 0.8% among those having the early cholecystectomy (P < .001).
Of patients who had delayed cholecystectomy and developed complications, 15.5% did so within 3 months, 6.5% by 6 months, and 1% by 12 months.
Among those who had ERCP with sphincterotomy, there were no significant differences in rates of biliary complications vs those who did not have sphincterotomy (26% vs 21%; P = .74), while stenting also did not reduce the risk (25% vs 27%; P = .81).
The leading reasons for delayed cholecystectomy included patients having a high surgical risk (27.3%), concurrent biliary pathology (19.2%), and physician preference (14%).
The findings underscore that “concurrent cholecystectomy is associated with the lowest risk of biliary complications,” El Halabi said.
“Delayed cholecystectomy is associated with an approximately 23% incidence of biliary complications with 1 year of initial admission, with the highest incidence occurring within 3 months,” she added. “Neither sphincterotomy nor stenting during ERCP mitigates this risk.”
“Early cholecystectomy during the index admission remains the most reliable strategy to reduce recurrent events.”
Findings Underscore Importance of Timing
Commenting on the study, Luis F. Lara, MD, division chief of digestive diseases at the University of Cincinnati, who co-moderated the session, agreed that evidence soundly supports early cholecystectomy.
“We also did a large study looking at this and there’s no doubt that doing it during the index admission has a tremendous effect on long-term outcomes,” Lara told GI & Hepatology News.
Lara noted that “part of it is people don’t show up again until they get sick again, so we don’t want to lose that opportunity the first time, during the index admission,” he said.
Lara’s previous studies have specifically documented how early cholecystectomy for acute biliary pancreatitis improves outcomes of hospitalization for cirrhosis and factors associated with early unplanned readmissions following same-admission cholecystectomy for acute biliary pancreatitis.
Akwi W. Asombang, MD, an interventional gastroenterologist at Massachusetts General Hospital and associate professor of medicine at Harvard Medical School, both in Boston, agreed that the findings are important.
“We know that if a cholecystectomy is not performed in the same admission as ERCP, the stones in the gallbladder remain and may migrate out into the bile duct, resulting in further complications as described in the study,” Asombang, also a session co-moderator, told GI & Hepatology News.
She noted that the practice can vary between institutions based on factors including the availability of physicians to perform the cholecystectomy.
Potential complications in delaying the procedure can range from inflammation and pancreatitis to obstruction of the bile duct, “which then can result in cholangitis and eventually sepsis or even death,” Asombang cautioned.
“So the timing of the procedure with ERCP is definitely significant,” she said.
El Halabi and Asombang had no disclosures to report. Lara reported a relationship with AbbVie.
A version of this article first appeared on Medscape.com.
, regardless of the receipt of sphincterotomy or stenting, new research showed.
“These findings suggest an opportunity for systemic interventions, including prioritization algorithms and better perioperative coordination, to address preventable delays,” reported the authors in the study, presented at American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
Choledocholithiasis can occur in up to 20% of symptomatic gallstone cases, and while guidelines recommend having a cholecystectomy concurrently with ERCP, data on the best timing is inconsistent and delays in gall bladder removal are consequently common.
One large study, for instance, the PONCHO trial conducted at 23 hospitals in Netherlands, showed complications to be significantly lower with same-admission vs interval cholecystectomy (4.7% vs 16.9%; P = .02).
Meanwhile, other research has suggested that delayed cholecystectomy is a preferred approach, allowing for removal when there is less inflammation.
Real world data meanwhile shows, despite the guidelines, the procedures are performed at the same time as ERCP only in about 41% of cases, first author Jessica El Halabi, MD, of the Johns Hopkins Hospital, Baltimore, said.
To further investigate outcomes associated with those delays, El Halabi and colleagues conducted a retrospective cohort study involving 507 patients admitted with choledocholithiasis at the hospital and community hospitals between 2005 and 2023 who had 12 months or more follow-up.
The patients had a mean age of 59 years and 59.4% were women.
Of the patients, 265 (52.3%) underwent early cholecystectomy, defined as surgery during the index admission, while 242 (47.7%) underwent delayed cholecystectomy, defined as postdischarge cholecystectomy or if cholecystectomy was not performed.
Overall, biliary complications occurred in as many as 23% of those who had delayed cholecystectomy compared with just 0.8% among those having the early cholecystectomy (P < .001).
Of patients who had delayed cholecystectomy and developed complications, 15.5% did so within 3 months, 6.5% by 6 months, and 1% by 12 months.
Among those who had ERCP with sphincterotomy, there were no significant differences in rates of biliary complications vs those who did not have sphincterotomy (26% vs 21%; P = .74), while stenting also did not reduce the risk (25% vs 27%; P = .81).
The leading reasons for delayed cholecystectomy included patients having a high surgical risk (27.3%), concurrent biliary pathology (19.2%), and physician preference (14%).
The findings underscore that “concurrent cholecystectomy is associated with the lowest risk of biliary complications,” El Halabi said.
“Delayed cholecystectomy is associated with an approximately 23% incidence of biliary complications with 1 year of initial admission, with the highest incidence occurring within 3 months,” she added. “Neither sphincterotomy nor stenting during ERCP mitigates this risk.”
“Early cholecystectomy during the index admission remains the most reliable strategy to reduce recurrent events.”
Findings Underscore Importance of Timing
Commenting on the study, Luis F. Lara, MD, division chief of digestive diseases at the University of Cincinnati, who co-moderated the session, agreed that evidence soundly supports early cholecystectomy.
“We also did a large study looking at this and there’s no doubt that doing it during the index admission has a tremendous effect on long-term outcomes,” Lara told GI & Hepatology News.
Lara noted that “part of it is people don’t show up again until they get sick again, so we don’t want to lose that opportunity the first time, during the index admission,” he said.
Lara’s previous studies have specifically documented how early cholecystectomy for acute biliary pancreatitis improves outcomes of hospitalization for cirrhosis and factors associated with early unplanned readmissions following same-admission cholecystectomy for acute biliary pancreatitis.
Akwi W. Asombang, MD, an interventional gastroenterologist at Massachusetts General Hospital and associate professor of medicine at Harvard Medical School, both in Boston, agreed that the findings are important.
“We know that if a cholecystectomy is not performed in the same admission as ERCP, the stones in the gallbladder remain and may migrate out into the bile duct, resulting in further complications as described in the study,” Asombang, also a session co-moderator, told GI & Hepatology News.
She noted that the practice can vary between institutions based on factors including the availability of physicians to perform the cholecystectomy.
Potential complications in delaying the procedure can range from inflammation and pancreatitis to obstruction of the bile duct, “which then can result in cholangitis and eventually sepsis or even death,” Asombang cautioned.
“So the timing of the procedure with ERCP is definitely significant,” she said.
El Halabi and Asombang had no disclosures to report. Lara reported a relationship with AbbVie.
A version of this article first appeared on Medscape.com.
, regardless of the receipt of sphincterotomy or stenting, new research showed.
“These findings suggest an opportunity for systemic interventions, including prioritization algorithms and better perioperative coordination, to address preventable delays,” reported the authors in the study, presented at American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
Choledocholithiasis can occur in up to 20% of symptomatic gallstone cases, and while guidelines recommend having a cholecystectomy concurrently with ERCP, data on the best timing is inconsistent and delays in gall bladder removal are consequently common.
One large study, for instance, the PONCHO trial conducted at 23 hospitals in Netherlands, showed complications to be significantly lower with same-admission vs interval cholecystectomy (4.7% vs 16.9%; P = .02).
Meanwhile, other research has suggested that delayed cholecystectomy is a preferred approach, allowing for removal when there is less inflammation.
Real world data meanwhile shows, despite the guidelines, the procedures are performed at the same time as ERCP only in about 41% of cases, first author Jessica El Halabi, MD, of the Johns Hopkins Hospital, Baltimore, said.
To further investigate outcomes associated with those delays, El Halabi and colleagues conducted a retrospective cohort study involving 507 patients admitted with choledocholithiasis at the hospital and community hospitals between 2005 and 2023 who had 12 months or more follow-up.
The patients had a mean age of 59 years and 59.4% were women.
Of the patients, 265 (52.3%) underwent early cholecystectomy, defined as surgery during the index admission, while 242 (47.7%) underwent delayed cholecystectomy, defined as postdischarge cholecystectomy or if cholecystectomy was not performed.
Overall, biliary complications occurred in as many as 23% of those who had delayed cholecystectomy compared with just 0.8% among those having the early cholecystectomy (P < .001).
Of patients who had delayed cholecystectomy and developed complications, 15.5% did so within 3 months, 6.5% by 6 months, and 1% by 12 months.
Among those who had ERCP with sphincterotomy, there were no significant differences in rates of biliary complications vs those who did not have sphincterotomy (26% vs 21%; P = .74), while stenting also did not reduce the risk (25% vs 27%; P = .81).
The leading reasons for delayed cholecystectomy included patients having a high surgical risk (27.3%), concurrent biliary pathology (19.2%), and physician preference (14%).
The findings underscore that “concurrent cholecystectomy is associated with the lowest risk of biliary complications,” El Halabi said.
“Delayed cholecystectomy is associated with an approximately 23% incidence of biliary complications with 1 year of initial admission, with the highest incidence occurring within 3 months,” she added. “Neither sphincterotomy nor stenting during ERCP mitigates this risk.”
“Early cholecystectomy during the index admission remains the most reliable strategy to reduce recurrent events.”
Findings Underscore Importance of Timing
Commenting on the study, Luis F. Lara, MD, division chief of digestive diseases at the University of Cincinnati, who co-moderated the session, agreed that evidence soundly supports early cholecystectomy.
“We also did a large study looking at this and there’s no doubt that doing it during the index admission has a tremendous effect on long-term outcomes,” Lara told GI & Hepatology News.
Lara noted that “part of it is people don’t show up again until they get sick again, so we don’t want to lose that opportunity the first time, during the index admission,” he said.
Lara’s previous studies have specifically documented how early cholecystectomy for acute biliary pancreatitis improves outcomes of hospitalization for cirrhosis and factors associated with early unplanned readmissions following same-admission cholecystectomy for acute biliary pancreatitis.
Akwi W. Asombang, MD, an interventional gastroenterologist at Massachusetts General Hospital and associate professor of medicine at Harvard Medical School, both in Boston, agreed that the findings are important.
“We know that if a cholecystectomy is not performed in the same admission as ERCP, the stones in the gallbladder remain and may migrate out into the bile duct, resulting in further complications as described in the study,” Asombang, also a session co-moderator, told GI & Hepatology News.
She noted that the practice can vary between institutions based on factors including the availability of physicians to perform the cholecystectomy.
Potential complications in delaying the procedure can range from inflammation and pancreatitis to obstruction of the bile duct, “which then can result in cholangitis and eventually sepsis or even death,” Asombang cautioned.
“So the timing of the procedure with ERCP is definitely significant,” she said.
El Halabi and Asombang had no disclosures to report. Lara reported a relationship with AbbVie.
A version of this article first appeared on Medscape.com.
FROM ACG 2025
Is AI a Cure for Clinician Burnout?
The practice of medicine is evolving rapidly, with clinicians facing enhanced pressure to maximize productivity while managing increasingly complex patients and related clinical documentation. Indeed, clinicians are spending less time seeing patients, and more time in front of a computer screen.
Despite the many rewards of clinical medicine, rates of clinical practice attrition have increased among physicians in all specialties since 2013 with enhanced administrative burdens identified as a prominent driver. Among its many applications, artificial intelligence (AI) has immense potential to reduce the administrative and cognitive burdens that contribute to clinician burnout and attrition through tools such as AI scribes – these technologies have been rapidly adopted across healthcare systems and are already in use by ~30% of physician practices. The hope is that AI scribes will significantly reduce documentation time, leading to improvements in clinician wellbeing and expanding capacity for patient care. Indeed, some studies have shown up to a 20-30% improvement in documentation efficiency.
So, is AI a cure for physician burnout? The answer depends on what is done with these efficiency gains. If healthcare organizations respond to this enhanced efficiency by increasing patient volume expectations rather than allowing clinicians to recapture some of this time for meaningful work and professional wellbeing, it could create a so-called “workload paradox” where modest time savings are offset by greater productivity demands and the cognitive burden of reviewing AI-generated errors. that prioritizes clinician well-being and patient safety in addition to productivity.
In our final issue of 2025, we highlight a recent RCT from Annals of Internal Medicine finding that fecal microbiota transplantation is at least as effective as vancomycin in treating primary C. difficile infection. In this month’s Member Spotlight, we feature Andrew Ofosu, MD, MPH (University of Cincinnati Health), who stresses the importance of transparency and compassion in communicating effectively with patients, particularly around complex diagnoses. We hope you enjoy this and all the exciting content in our December issue.
Megan A. Adams, MD, JD, MSc
Editor in Chief
The practice of medicine is evolving rapidly, with clinicians facing enhanced pressure to maximize productivity while managing increasingly complex patients and related clinical documentation. Indeed, clinicians are spending less time seeing patients, and more time in front of a computer screen.
Despite the many rewards of clinical medicine, rates of clinical practice attrition have increased among physicians in all specialties since 2013 with enhanced administrative burdens identified as a prominent driver. Among its many applications, artificial intelligence (AI) has immense potential to reduce the administrative and cognitive burdens that contribute to clinician burnout and attrition through tools such as AI scribes – these technologies have been rapidly adopted across healthcare systems and are already in use by ~30% of physician practices. The hope is that AI scribes will significantly reduce documentation time, leading to improvements in clinician wellbeing and expanding capacity for patient care. Indeed, some studies have shown up to a 20-30% improvement in documentation efficiency.
So, is AI a cure for physician burnout? The answer depends on what is done with these efficiency gains. If healthcare organizations respond to this enhanced efficiency by increasing patient volume expectations rather than allowing clinicians to recapture some of this time for meaningful work and professional wellbeing, it could create a so-called “workload paradox” where modest time savings are offset by greater productivity demands and the cognitive burden of reviewing AI-generated errors. that prioritizes clinician well-being and patient safety in addition to productivity.
In our final issue of 2025, we highlight a recent RCT from Annals of Internal Medicine finding that fecal microbiota transplantation is at least as effective as vancomycin in treating primary C. difficile infection. In this month’s Member Spotlight, we feature Andrew Ofosu, MD, MPH (University of Cincinnati Health), who stresses the importance of transparency and compassion in communicating effectively with patients, particularly around complex diagnoses. We hope you enjoy this and all the exciting content in our December issue.
Megan A. Adams, MD, JD, MSc
Editor in Chief
The practice of medicine is evolving rapidly, with clinicians facing enhanced pressure to maximize productivity while managing increasingly complex patients and related clinical documentation. Indeed, clinicians are spending less time seeing patients, and more time in front of a computer screen.
Despite the many rewards of clinical medicine, rates of clinical practice attrition have increased among physicians in all specialties since 2013 with enhanced administrative burdens identified as a prominent driver. Among its many applications, artificial intelligence (AI) has immense potential to reduce the administrative and cognitive burdens that contribute to clinician burnout and attrition through tools such as AI scribes – these technologies have been rapidly adopted across healthcare systems and are already in use by ~30% of physician practices. The hope is that AI scribes will significantly reduce documentation time, leading to improvements in clinician wellbeing and expanding capacity for patient care. Indeed, some studies have shown up to a 20-30% improvement in documentation efficiency.
So, is AI a cure for physician burnout? The answer depends on what is done with these efficiency gains. If healthcare organizations respond to this enhanced efficiency by increasing patient volume expectations rather than allowing clinicians to recapture some of this time for meaningful work and professional wellbeing, it could create a so-called “workload paradox” where modest time savings are offset by greater productivity demands and the cognitive burden of reviewing AI-generated errors. that prioritizes clinician well-being and patient safety in addition to productivity.
In our final issue of 2025, we highlight a recent RCT from Annals of Internal Medicine finding that fecal microbiota transplantation is at least as effective as vancomycin in treating primary C. difficile infection. In this month’s Member Spotlight, we feature Andrew Ofosu, MD, MPH (University of Cincinnati Health), who stresses the importance of transparency and compassion in communicating effectively with patients, particularly around complex diagnoses. We hope you enjoy this and all the exciting content in our December issue.
Megan A. Adams, MD, JD, MSc
Editor in Chief
Approach to Weight Management in GI Practice
Introduction
The majority of patients in the United States are now overweight or obese, and as gastroenterologists we treat a number of conditions that are caused or worsened by obesity.1 Cirrhosis related to metabolic associated fatty liver disease (MAFLD) is now a leading indication for liver transplantation in the US2 and obesity is a clear risk factor for all major malignancies of the GI tract, including esophageal, gastric cardia, pancreatic, liver, gallbladder, colon, and rectum.3 Obesity is associated with dysbiosis and impacts barrier function: increasing permeability, abnormal gut bacterial translocation, and inflammation.4 It is more common than malnutrition in our patients with inflammatory bowel disease (IBD), where it impacts response to biologic drugs, increases the technical difficulty of surgeries, such as IPAA, and is associated with worse surgical outcomes.5 Furthermore, patients with obesity may be less likely to undergo preventative cancer screenings and are at increased risk related to sedation for endoscopic procedures.6 With over 40% of Americans suffering from obesity, and increasingly effective treatments available,
Understanding the Mechanisms of Obesity
There are complex orexigenic and anorexigenic brain pathways in the hypothalamus which control global energy balance.7 Obesity results when energy intake exceeds energy expenditure. While overeating and a sedentary lifestyle are commonly blamed, there are a number of elements that contribute, including genetics, medical conditions, medications, psychosocial factors, and environmental components. For example, sleep loss contributes to weight gain by several mechanisms including increasing ghrelin and decreasing leptin levels, thereby increasing hunger and appetite, as well as by decreasing insulin sensitivity and increasing cortisol. Subjects exposed to sleep deprivation in research settings take in 550 kcal more the following day.8 Medications used commonly in GI practice including corticosteroids, antihistamines, propranolol, and amitriptyline, are obesogenic9 and cannabis can impact hypothalamic pathways to stimulate hunger.10
When patients diet or exercise to lose weight, as we have traditionally advised, there are strong hormonal changes and metabolic adaptations that occur to preserve the defended fat mass or “set point.” Loss of adipose tissue results in decreased production of leptin, a hormone that stimulates satiety pathways and inhibits orexigenic pathways, greatly increasing hunger and cravings. Increases in ghrelin production by the stomach decreases perceptions of fullness. With weight loss, energy requirements decrease, and muscles become more efficient, meaning fewer kcal are needed to maintain bodily processes.11 Eventually a plateau is reached, while motivation to diet and restraint around food wane, and hedonistic (reward) pathways are activated. These powerful factors result in the regain of lost weight within one year in the majority of patients.
Implementing Weight Management into GI Practice
Given the stigma and bias around obesity, patients often feel shame and vulnerability around the condition. It is important to have empathy in your approach, asking permission to discuss weight and using patient-first language (e.g. “patient with obesity” not “obese patient”). While BMI is predictive of health outcomes, it does not measure body fat percentage and may be misleading, such as in muscular individuals. Other measures of adiposity including waist circumference and body composition testing, such as with DEXA, may provide additional data. A BMI of 30 or above defines obesity, though newer definitions incorporate related symptoms, organ disfunction, and metabolic abnormalities into the term “clinical obesity.”12 Asian patients experience metabolic complications at a lower BMI, and therefore the definition of obese is 27.5kg/m2 in this population.
Begin by taking a weight history. Has this been a lifelong struggle or is there a particular life circumstance, such as working a third shift or recent pregnancy which precipitated weight gain? Patients should be asked about binge eating or eating late into the evening or waking at night to eat, as these disordered eating behaviors are managed with specific medications and behavioral therapies. Inquire about sleep duration and quality and refer for a sleep study if there is suspicion for obstructive sleep apnea. Other weight-related comorbidities including hyperlipidemia, type 2 diabetes mellitus (T2DM), and MAFLD should be considered and merit a more aggressive approach, as does more severe obesity (class III, BMI ≥40). Questions about marijuana and alcohol use as well as review of the medication list for obesogenic medications can provide further insight into modifiable contributing factors.
Pillars of Weight Management
The internet is awash with trendy diet recommendations, and widespread misconceptions about obesity management are even ingrained into how physicians approach the disease. It is critical to remember that this is not a consequence of bad choices or lack of self-control. Exercise alone is insufficient to result in significant weight loss.13 Furthermore, whether it is through low fat, low carb, or intermittent fasting, weight loss will occur with calorie deficit.14 Evidence-based diet and lifestyle recommendations to lay the groundwork for success should be discussed at each visit (see Table 1). The Mediterranean diet is recommended for weight loss as well as for several GI disorders (i.e., MAFLD and IBD) and is the optimal eating strategy for cardiovascular health.15 Patients should be advised to engage in 150 minutes of moderate exercise per week, such as brisk walking, and should incorporate resistance training to build muscle and maintain bone density.
Anti-obesity Medications
There are a number of medications, either FDA approved or used off label, for treatment of obesity (see Table 2).16 All are indicated for patients with a BMI of ≥ 30 kg/m2 or for those with a BMI between 27-29 kg/m2 with weight-related comorbidities and should be used in combination with diet and lifestyle interventions. None are approved or safe in pregnancy. Mechanisms of action vary by type and include decreased appetite, increased energy expenditure, improved insulin sensitivity, and interfere with absorption.
The newest and most effective anti-obesity medications (AOM), the glucagon-like peptide-1 receptor agonists (GLP-1 RA) are derived from gut hormones secreted in the distal small bowel and colon in response to a meal, which function to delay gastric emptying, increase insulin release from the pancreas, and reduce hepatic gluconeogenesis. Central nervous system effects are not yet entirely understood, but function to decrease appetite and increase satiety. Initially developed for treatment of T2DM, observed weight reduction in patients treated with GLP-1 RA led to clinical trials for treatment of obesity. Semaglutide treatment resulted in weight reduction of 16.9% of total body weight (TBW), and one third of subjects lost ≥ 20% of TBW.17 Tirzepatide combines GLP-1 RA and a gastric inhibitory polypeptide (GIP) receptor agonist, which also has an incretin effect and functions to slow gastric emptying. In the pivotal SURMOUNT trial, approximately 58% of patients achieved ≥20% loss of TBW18 with 15mg weekly dosing of tirzepatide. This class of drugs is a logical choice in patients with T2DM and obesity. Long-term treatment appears necessary, as patients typically regain two-thirds of lost weight within a year after GLP-1 RA are stopped.
Based on tumors observed in rodents, GLP-1 RA are contraindicated in patients with a personal or family history of multiple endocrine neoplasia type 2 (MEN II) or medullary thyroid cancer. These tumors have not been observed in humans treated with GLP-1 RA. They should be used with caution in patients with history of pancreatitis, gastroparesis, or diabetic retinopathy, though a recent systematic review and meta-analysis suggests showed little to no increased risk for biliary events from GLP-1 RA.19 Side effects are most commonly gastrointestinal in nature (nausea, reflux, constipation or diarrhea) and are typically most severe with initiation of the drug and with dose escalation. Side effects can be mitigated by initiating these drugs at lowest doses and gradually titrating up (every four weeks) based on effectiveness and tolerability. Antisecretory, antiemetic, and laxative medications can also be used to help manage GLP-1 RA related side effects.
There is no reason to escalate to highest doses if patients are experiencing weight loss and reduction in food cravings at lower doses. Both semaglutide and tirzepatide are administered subcutaneously every seven days. Once patients have reached goal weight, they can either continue maintenance therapy at that same dose/interval, or if motivated to do so, may gradually reduce the weekly dose in a stepwise approach to determine the minimally effective dose to maintain weight loss. There are not yet published maintenance studies to guide this process. Currently the price of GLP-1 RA and inconsistent insurance coverage make them inaccessible to many patients. The manufacturers of both semaglutide and tirzepatide offer direct to consumer pricing and home delivery.
Bariatric Surgery
In patients with higher BMI (≥35kg/m2) or those with BMI ≥30kg/m2 and obesity-related metabolic disease and the desire to avoid lifelong medications or who fail or are intolerant of AOM, bariatric options should be considered.20 Sleeve gastrectomy has become the most performed surgery for treatment of obesity. It is a restrictive procedure, removing 80% of the stomach, but a drop in circulating levels of ghrelin afterwards also leads to decreased feelings of hunger. It results in weight loss of 25-30% TBW loss. It is not a good choice for patients who suffer from severe GERD, as this typically worsens afterwards; furthermore, de novo Barrett’s has been observed in nearly 6% of patients who undergo sleeve gastrectomy.21
Roux-en-Y gastric bypass is a restrictive and malabsorptive procedure, resulting in 30-35% TBW loss. It has beneficial and immediate metabolic effects, including increased release of endogenous GLP-1, which leads to improvements in weight-related T2DM. The newer single anastomosis duodenal-ileal bypass with sleeve gastrectomy (SADI-S) starts with a sleeve gastrectomy, making a smaller tube-shaped stomach. The duodenum is divided just after the stomach and then a loop of ileum is brought up and connected to the stomach (see Figure 1). This procedure is highly effective, with patients losing 75-95% of excess body weight and is becoming a preferred option for patients with greater BMI (≥50kg/m2). It is also an option for patients who have already had a sleeve gastrectomy and are seeking further weight loss. Because there is only one anastomosis, perioperative complications, such as anastomotic leaks, are reduced. The risk of micronutrient deficiencies is present with all malabsorptive procedures, and these patients must supplement with multivitamins, iron, vitamin D, and calcium.
Endoscopic Therapies
Endoscopic bariatric and metabolic therapies (EBMTs) have been increasingly studied and utilized, and this less invasive option may be more appropriate for or attractive to many patients. Intragastric balloons, which reduce meal volume and delay gastric emptying, can be used short term only (six months) resulting in loss of about 6.9% of total body weight (TBW) greater than lifestyle modification (LM) alone, and may be considered in limited situations, such as need for pre-operative weight loss to reduce risks in very obese individuals.22
Endoscopic gastric remodeling (EGR), also known as endoscopic sleeve gastrectomy (ESG), is a purely restrictive procedure in which the stomach is cinched to resize and reshape using an endoscopic suturing device (see Figure 2).23 It is an option for patients with class 1 or 2 obesity, with data from a randomized controlled trial in this population demonstrating mean percentage of TBW loss of 13.6% at 52 weeks compared to 0.8% in those treated with LM alone.24 A recent meta-analysis of 21 observational studies, including patients with higher BMIs (32.5 to 49.9 kg/m2) showed pooled average weight loss of 17.3% TBW at 12 months with EGR.22 This procedure has potential advantages of fewer complications, quicker recovery, and much less new-onset GERD compared to laparoscopic sleeve gastrectomy. Furthermore, it may be utilized in combination with AOMs to achieve optimum weight loss and metabolic outcomes.25,26 Potential adverse events include abdominal pain, nausea and vomiting (which may be severe), as well as rare instances of intra/extra luminal bleeding or abdominal abscess requiring drainage.22
Recent joint American/European Gastrointestinal Endoscopy guidelines suggest the use of EBMTs plus lifestyle modification in patients with a BMI of ≥ 30 kg/m2, or with a BMI of 27.0-29.9 kg/m2 with at least 1 obesity-related comorbidity.22 Small bowel interventions including duodenal-jejunal bypass liner and duodenal mucosal resurfacing are being investigated for patients with obesity and type 2 diabetes but not yet commercially available.
Conclusion
Given the overlap of obesity with many GI disorders, it is entirely appropriate for gastroenterologists to consider it worthy of aggressive treatment, particularly in patients with MAFLD and other serious weight related comorbidities. With a compassionate and empathetic approach, and a number of highly effective medical, endoscopic, and surgical therapies now available, weight management has the potential to be extremely rewarding when implemented in GI practice.
Dr. Kelly is based in the Department of Medicine, Division of Gastroenterology, Brigham and Women’s Hospital, and Harvard Medical School, both in Boston, Massachusetts. She serves on the clinical advisory board for OpenBiome (unpaid) and has served on an advisory board for Eli Lilly and Company.
References
1. Hales CM, et al. Prevalence of Obesity and Severe Obesity Among Adults: United States, 2017-2018. NCHS Data Brief 2020 Feb:(360):1–8.
2. Pais R, et al. NAFLD and liver transplantation: Current burden and expected challenges. J Hepatol. 2016 Dec. doi: 10.1016/j.jhep.2016.07.033.
3. Lauby-Secretan B, et al. Body Fatness and Cancer--Viewpoint of the IARC Working Group. N Engl J Med. 2016 Aug. doi: 10.1056/NEJMsr1606602.
4. Kim A. Dysbiosis: A Review Highlighting Obesity and Inflammatory Bowel Disease. J Clin Gastroenterol. 2015 Nov-Dec. doi: 10.1097/MCG.0000000000000356.
5. Singh S, et al. Obesity in IBD: epidemiology, pathogenesis, disease course and treatment outcomes. Nat Rev Gastroenterol Hepatol. 2017 Feb. doi: 10.1038/nrgastro.2016.181.
6. Sundararaman L, Goudra B. Sedation for GI Endoscopy in the Morbidly Obese: Challenges and Possible Solutions. J Clin Med. 2024 Aug. doi: 10.3390/jcm13164635.
7. Bombassaro B, et al. The hypothalamus as the central regulator of energy balance and its impact on current and future obesity treatments. Arch Endocrinol Metab. 2024 Nov. doi: 10.20945/2359-4292-2024-0082.
8. Beccuti G, Pannain S. Sleep and obesity. Curr Opin Clin Nutr Metab Care. 2011 Jul. doi: 10.1097/MCO.0b013e3283479109.
9. Desalermos A, et al. Effect of Obesogenic Medications on Weight-Loss Outcomes in a Behavioral Weight-Management Program. Obesity (Silver Spring). 2019 May. doi: 10.1002/oby.22444.
10. Lord MN, Noble EE. Hypothalamic cannabinoid signaling: Consequences for eating behavior. Pharmacol Res Perspect. 2024 Oct. doi: 10.1002/prp2.1251.
11. Farhana A, Rehman A. Metabolic Consequences of Weight Reduction. [Updated 2023 Jul 10]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2025 Jan. Available from: https://www.ncbi.nlm.nih.gov/books/NBK572145/.
12. Rubino F, et al. Definition and diagnostic criteria of clinical obesity. Lancet Diabetes Endocrinol. 2025 Mar. doi: 10.1016/S2213-8587(24)00316-4.
13. Cox CE. Role of Physical Activity for Weight Loss and Weight Maintenance. Diabetes Spectr. 2017 Aug. doi: 10.2337/ds17-0013.
14. Chaput JP, et al. Widespread misconceptions about obesity. Can Fam Physician. 2014 Nov. PMID: 25392431.
15. Muscogiuri G, et al. Mediterranean Diet and Obesity-related Disorders: What is the Evidence? Curr Obes Rep. 2022 Dec. doi: 10.1007/s13679-022-00481-1.
16. Gudzune KA, Kushner RF. Medications for Obesity: A Review. JAMA. 2024 Aug. doi: 10.1001/jama.2024.10816.
17. Wilding JPH, et al. Once-Weekly Semaglutide in Adults with Overweight or Obesity. N Engl J Med. 2021 Feb. doi: 10.1056/NEJMoa2032183.
18. Jastreboff AM, et al. Tirzepatide Once Weekly for the Treatment of Obesity. N Engl J Med. 2022 Jun. doi: 10.1056/NEJMoa2206038.
19. Chiang CH, et al. Glucagon-Like Peptide-1 Receptor Agonists and Gastrointestinal Adverse Events: A Systematic Review and Meta-Analysis. Gastroenterology. 2025 Nov. doi: 10.1053/j.gastro.2025.06.003.
20. Aderinto N, et al. Recent advances in bariatric surgery: a narrative review of weight loss procedures. Ann Med Surg (Lond). 2023 Nov. doi: 10.1097/MS9.0000000000001472.
21. Chandan S, et al. Risk of De Novo Barrett’s Esophagus Post Sleeve Gastrectomy: A Systematic Review and Meta-Analysis of Studies With Long-Term Follow-Up. Clin Gastroenterol Hepatol. 2025 Jan. doi: 10.1016/j.cgh.2024.06.041.
22. Jirapinyo P, et al. American Society for Gastrointestinal Endoscopy-European Society of Gastrointestinal Endoscopy guideline on primary endoscopic bariatric and metabolic therapies for adults with obesity. Gastrointest Endosc. 2024 Jun. doi: 10.1016/j.gie.2023.12.004.
23. Nduma BN, et al. Endoscopic Gastric Sleeve: A Review of Literature. Cureus. 2023 Mar. doi: 10.7759/cureus.36353.
24. Abu Dayyeh BK, et al. Endoscopic sleeve gastroplasty for treatment of class 1 and 2 obesity (MERIT): a prospective, multicentre, randomised trial. Lancet. 2022 Aug. doi: 10.1016/S0140-6736(22)01280-6.
25. Gala K, et al. Outcomes of concomitant antiobesity medication use with endoscopic sleeve gastroplasty in clinical US settings. Obes Pillars. 2024 May. doi: 10.1016/j.obpill.2024.100112.
26. Chung CS, et al. Endoscopic sleeve gastroplasty combined with anti-obesity medication for better control of weight and diabetes. Clin Endosc. 2025 May. doi: 10.5946/ce.2024.274.
Introduction
The majority of patients in the United States are now overweight or obese, and as gastroenterologists we treat a number of conditions that are caused or worsened by obesity.1 Cirrhosis related to metabolic associated fatty liver disease (MAFLD) is now a leading indication for liver transplantation in the US2 and obesity is a clear risk factor for all major malignancies of the GI tract, including esophageal, gastric cardia, pancreatic, liver, gallbladder, colon, and rectum.3 Obesity is associated with dysbiosis and impacts barrier function: increasing permeability, abnormal gut bacterial translocation, and inflammation.4 It is more common than malnutrition in our patients with inflammatory bowel disease (IBD), where it impacts response to biologic drugs, increases the technical difficulty of surgeries, such as IPAA, and is associated with worse surgical outcomes.5 Furthermore, patients with obesity may be less likely to undergo preventative cancer screenings and are at increased risk related to sedation for endoscopic procedures.6 With over 40% of Americans suffering from obesity, and increasingly effective treatments available,
Understanding the Mechanisms of Obesity
There are complex orexigenic and anorexigenic brain pathways in the hypothalamus which control global energy balance.7 Obesity results when energy intake exceeds energy expenditure. While overeating and a sedentary lifestyle are commonly blamed, there are a number of elements that contribute, including genetics, medical conditions, medications, psychosocial factors, and environmental components. For example, sleep loss contributes to weight gain by several mechanisms including increasing ghrelin and decreasing leptin levels, thereby increasing hunger and appetite, as well as by decreasing insulin sensitivity and increasing cortisol. Subjects exposed to sleep deprivation in research settings take in 550 kcal more the following day.8 Medications used commonly in GI practice including corticosteroids, antihistamines, propranolol, and amitriptyline, are obesogenic9 and cannabis can impact hypothalamic pathways to stimulate hunger.10
When patients diet or exercise to lose weight, as we have traditionally advised, there are strong hormonal changes and metabolic adaptations that occur to preserve the defended fat mass or “set point.” Loss of adipose tissue results in decreased production of leptin, a hormone that stimulates satiety pathways and inhibits orexigenic pathways, greatly increasing hunger and cravings. Increases in ghrelin production by the stomach decreases perceptions of fullness. With weight loss, energy requirements decrease, and muscles become more efficient, meaning fewer kcal are needed to maintain bodily processes.11 Eventually a plateau is reached, while motivation to diet and restraint around food wane, and hedonistic (reward) pathways are activated. These powerful factors result in the regain of lost weight within one year in the majority of patients.
Implementing Weight Management into GI Practice
Given the stigma and bias around obesity, patients often feel shame and vulnerability around the condition. It is important to have empathy in your approach, asking permission to discuss weight and using patient-first language (e.g. “patient with obesity” not “obese patient”). While BMI is predictive of health outcomes, it does not measure body fat percentage and may be misleading, such as in muscular individuals. Other measures of adiposity including waist circumference and body composition testing, such as with DEXA, may provide additional data. A BMI of 30 or above defines obesity, though newer definitions incorporate related symptoms, organ disfunction, and metabolic abnormalities into the term “clinical obesity.”12 Asian patients experience metabolic complications at a lower BMI, and therefore the definition of obese is 27.5kg/m2 in this population.
Begin by taking a weight history. Has this been a lifelong struggle or is there a particular life circumstance, such as working a third shift or recent pregnancy which precipitated weight gain? Patients should be asked about binge eating or eating late into the evening or waking at night to eat, as these disordered eating behaviors are managed with specific medications and behavioral therapies. Inquire about sleep duration and quality and refer for a sleep study if there is suspicion for obstructive sleep apnea. Other weight-related comorbidities including hyperlipidemia, type 2 diabetes mellitus (T2DM), and MAFLD should be considered and merit a more aggressive approach, as does more severe obesity (class III, BMI ≥40). Questions about marijuana and alcohol use as well as review of the medication list for obesogenic medications can provide further insight into modifiable contributing factors.
Pillars of Weight Management
The internet is awash with trendy diet recommendations, and widespread misconceptions about obesity management are even ingrained into how physicians approach the disease. It is critical to remember that this is not a consequence of bad choices or lack of self-control. Exercise alone is insufficient to result in significant weight loss.13 Furthermore, whether it is through low fat, low carb, or intermittent fasting, weight loss will occur with calorie deficit.14 Evidence-based diet and lifestyle recommendations to lay the groundwork for success should be discussed at each visit (see Table 1). The Mediterranean diet is recommended for weight loss as well as for several GI disorders (i.e., MAFLD and IBD) and is the optimal eating strategy for cardiovascular health.15 Patients should be advised to engage in 150 minutes of moderate exercise per week, such as brisk walking, and should incorporate resistance training to build muscle and maintain bone density.
Anti-obesity Medications
There are a number of medications, either FDA approved or used off label, for treatment of obesity (see Table 2).16 All are indicated for patients with a BMI of ≥ 30 kg/m2 or for those with a BMI between 27-29 kg/m2 with weight-related comorbidities and should be used in combination with diet and lifestyle interventions. None are approved or safe in pregnancy. Mechanisms of action vary by type and include decreased appetite, increased energy expenditure, improved insulin sensitivity, and interfere with absorption.
The newest and most effective anti-obesity medications (AOM), the glucagon-like peptide-1 receptor agonists (GLP-1 RA) are derived from gut hormones secreted in the distal small bowel and colon in response to a meal, which function to delay gastric emptying, increase insulin release from the pancreas, and reduce hepatic gluconeogenesis. Central nervous system effects are not yet entirely understood, but function to decrease appetite and increase satiety. Initially developed for treatment of T2DM, observed weight reduction in patients treated with GLP-1 RA led to clinical trials for treatment of obesity. Semaglutide treatment resulted in weight reduction of 16.9% of total body weight (TBW), and one third of subjects lost ≥ 20% of TBW.17 Tirzepatide combines GLP-1 RA and a gastric inhibitory polypeptide (GIP) receptor agonist, which also has an incretin effect and functions to slow gastric emptying. In the pivotal SURMOUNT trial, approximately 58% of patients achieved ≥20% loss of TBW18 with 15mg weekly dosing of tirzepatide. This class of drugs is a logical choice in patients with T2DM and obesity. Long-term treatment appears necessary, as patients typically regain two-thirds of lost weight within a year after GLP-1 RA are stopped.
Based on tumors observed in rodents, GLP-1 RA are contraindicated in patients with a personal or family history of multiple endocrine neoplasia type 2 (MEN II) or medullary thyroid cancer. These tumors have not been observed in humans treated with GLP-1 RA. They should be used with caution in patients with history of pancreatitis, gastroparesis, or diabetic retinopathy, though a recent systematic review and meta-analysis suggests showed little to no increased risk for biliary events from GLP-1 RA.19 Side effects are most commonly gastrointestinal in nature (nausea, reflux, constipation or diarrhea) and are typically most severe with initiation of the drug and with dose escalation. Side effects can be mitigated by initiating these drugs at lowest doses and gradually titrating up (every four weeks) based on effectiveness and tolerability. Antisecretory, antiemetic, and laxative medications can also be used to help manage GLP-1 RA related side effects.
There is no reason to escalate to highest doses if patients are experiencing weight loss and reduction in food cravings at lower doses. Both semaglutide and tirzepatide are administered subcutaneously every seven days. Once patients have reached goal weight, they can either continue maintenance therapy at that same dose/interval, or if motivated to do so, may gradually reduce the weekly dose in a stepwise approach to determine the minimally effective dose to maintain weight loss. There are not yet published maintenance studies to guide this process. Currently the price of GLP-1 RA and inconsistent insurance coverage make them inaccessible to many patients. The manufacturers of both semaglutide and tirzepatide offer direct to consumer pricing and home delivery.
Bariatric Surgery
In patients with higher BMI (≥35kg/m2) or those with BMI ≥30kg/m2 and obesity-related metabolic disease and the desire to avoid lifelong medications or who fail or are intolerant of AOM, bariatric options should be considered.20 Sleeve gastrectomy has become the most performed surgery for treatment of obesity. It is a restrictive procedure, removing 80% of the stomach, but a drop in circulating levels of ghrelin afterwards also leads to decreased feelings of hunger. It results in weight loss of 25-30% TBW loss. It is not a good choice for patients who suffer from severe GERD, as this typically worsens afterwards; furthermore, de novo Barrett’s has been observed in nearly 6% of patients who undergo sleeve gastrectomy.21
Roux-en-Y gastric bypass is a restrictive and malabsorptive procedure, resulting in 30-35% TBW loss. It has beneficial and immediate metabolic effects, including increased release of endogenous GLP-1, which leads to improvements in weight-related T2DM. The newer single anastomosis duodenal-ileal bypass with sleeve gastrectomy (SADI-S) starts with a sleeve gastrectomy, making a smaller tube-shaped stomach. The duodenum is divided just after the stomach and then a loop of ileum is brought up and connected to the stomach (see Figure 1). This procedure is highly effective, with patients losing 75-95% of excess body weight and is becoming a preferred option for patients with greater BMI (≥50kg/m2). It is also an option for patients who have already had a sleeve gastrectomy and are seeking further weight loss. Because there is only one anastomosis, perioperative complications, such as anastomotic leaks, are reduced. The risk of micronutrient deficiencies is present with all malabsorptive procedures, and these patients must supplement with multivitamins, iron, vitamin D, and calcium.
Endoscopic Therapies
Endoscopic bariatric and metabolic therapies (EBMTs) have been increasingly studied and utilized, and this less invasive option may be more appropriate for or attractive to many patients. Intragastric balloons, which reduce meal volume and delay gastric emptying, can be used short term only (six months) resulting in loss of about 6.9% of total body weight (TBW) greater than lifestyle modification (LM) alone, and may be considered in limited situations, such as need for pre-operative weight loss to reduce risks in very obese individuals.22
Endoscopic gastric remodeling (EGR), also known as endoscopic sleeve gastrectomy (ESG), is a purely restrictive procedure in which the stomach is cinched to resize and reshape using an endoscopic suturing device (see Figure 2).23 It is an option for patients with class 1 or 2 obesity, with data from a randomized controlled trial in this population demonstrating mean percentage of TBW loss of 13.6% at 52 weeks compared to 0.8% in those treated with LM alone.24 A recent meta-analysis of 21 observational studies, including patients with higher BMIs (32.5 to 49.9 kg/m2) showed pooled average weight loss of 17.3% TBW at 12 months with EGR.22 This procedure has potential advantages of fewer complications, quicker recovery, and much less new-onset GERD compared to laparoscopic sleeve gastrectomy. Furthermore, it may be utilized in combination with AOMs to achieve optimum weight loss and metabolic outcomes.25,26 Potential adverse events include abdominal pain, nausea and vomiting (which may be severe), as well as rare instances of intra/extra luminal bleeding or abdominal abscess requiring drainage.22
Recent joint American/European Gastrointestinal Endoscopy guidelines suggest the use of EBMTs plus lifestyle modification in patients with a BMI of ≥ 30 kg/m2, or with a BMI of 27.0-29.9 kg/m2 with at least 1 obesity-related comorbidity.22 Small bowel interventions including duodenal-jejunal bypass liner and duodenal mucosal resurfacing are being investigated for patients with obesity and type 2 diabetes but not yet commercially available.
Conclusion
Given the overlap of obesity with many GI disorders, it is entirely appropriate for gastroenterologists to consider it worthy of aggressive treatment, particularly in patients with MAFLD and other serious weight related comorbidities. With a compassionate and empathetic approach, and a number of highly effective medical, endoscopic, and surgical therapies now available, weight management has the potential to be extremely rewarding when implemented in GI practice.
Dr. Kelly is based in the Department of Medicine, Division of Gastroenterology, Brigham and Women’s Hospital, and Harvard Medical School, both in Boston, Massachusetts. She serves on the clinical advisory board for OpenBiome (unpaid) and has served on an advisory board for Eli Lilly and Company.
References
1. Hales CM, et al. Prevalence of Obesity and Severe Obesity Among Adults: United States, 2017-2018. NCHS Data Brief 2020 Feb:(360):1–8.
2. Pais R, et al. NAFLD and liver transplantation: Current burden and expected challenges. J Hepatol. 2016 Dec. doi: 10.1016/j.jhep.2016.07.033.
3. Lauby-Secretan B, et al. Body Fatness and Cancer--Viewpoint of the IARC Working Group. N Engl J Med. 2016 Aug. doi: 10.1056/NEJMsr1606602.
4. Kim A. Dysbiosis: A Review Highlighting Obesity and Inflammatory Bowel Disease. J Clin Gastroenterol. 2015 Nov-Dec. doi: 10.1097/MCG.0000000000000356.
5. Singh S, et al. Obesity in IBD: epidemiology, pathogenesis, disease course and treatment outcomes. Nat Rev Gastroenterol Hepatol. 2017 Feb. doi: 10.1038/nrgastro.2016.181.
6. Sundararaman L, Goudra B. Sedation for GI Endoscopy in the Morbidly Obese: Challenges and Possible Solutions. J Clin Med. 2024 Aug. doi: 10.3390/jcm13164635.
7. Bombassaro B, et al. The hypothalamus as the central regulator of energy balance and its impact on current and future obesity treatments. Arch Endocrinol Metab. 2024 Nov. doi: 10.20945/2359-4292-2024-0082.
8. Beccuti G, Pannain S. Sleep and obesity. Curr Opin Clin Nutr Metab Care. 2011 Jul. doi: 10.1097/MCO.0b013e3283479109.
9. Desalermos A, et al. Effect of Obesogenic Medications on Weight-Loss Outcomes in a Behavioral Weight-Management Program. Obesity (Silver Spring). 2019 May. doi: 10.1002/oby.22444.
10. Lord MN, Noble EE. Hypothalamic cannabinoid signaling: Consequences for eating behavior. Pharmacol Res Perspect. 2024 Oct. doi: 10.1002/prp2.1251.
11. Farhana A, Rehman A. Metabolic Consequences of Weight Reduction. [Updated 2023 Jul 10]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2025 Jan. Available from: https://www.ncbi.nlm.nih.gov/books/NBK572145/.
12. Rubino F, et al. Definition and diagnostic criteria of clinical obesity. Lancet Diabetes Endocrinol. 2025 Mar. doi: 10.1016/S2213-8587(24)00316-4.
13. Cox CE. Role of Physical Activity for Weight Loss and Weight Maintenance. Diabetes Spectr. 2017 Aug. doi: 10.2337/ds17-0013.
14. Chaput JP, et al. Widespread misconceptions about obesity. Can Fam Physician. 2014 Nov. PMID: 25392431.
15. Muscogiuri G, et al. Mediterranean Diet and Obesity-related Disorders: What is the Evidence? Curr Obes Rep. 2022 Dec. doi: 10.1007/s13679-022-00481-1.
16. Gudzune KA, Kushner RF. Medications for Obesity: A Review. JAMA. 2024 Aug. doi: 10.1001/jama.2024.10816.
17. Wilding JPH, et al. Once-Weekly Semaglutide in Adults with Overweight or Obesity. N Engl J Med. 2021 Feb. doi: 10.1056/NEJMoa2032183.
18. Jastreboff AM, et al. Tirzepatide Once Weekly for the Treatment of Obesity. N Engl J Med. 2022 Jun. doi: 10.1056/NEJMoa2206038.
19. Chiang CH, et al. Glucagon-Like Peptide-1 Receptor Agonists and Gastrointestinal Adverse Events: A Systematic Review and Meta-Analysis. Gastroenterology. 2025 Nov. doi: 10.1053/j.gastro.2025.06.003.
20. Aderinto N, et al. Recent advances in bariatric surgery: a narrative review of weight loss procedures. Ann Med Surg (Lond). 2023 Nov. doi: 10.1097/MS9.0000000000001472.
21. Chandan S, et al. Risk of De Novo Barrett’s Esophagus Post Sleeve Gastrectomy: A Systematic Review and Meta-Analysis of Studies With Long-Term Follow-Up. Clin Gastroenterol Hepatol. 2025 Jan. doi: 10.1016/j.cgh.2024.06.041.
22. Jirapinyo P, et al. American Society for Gastrointestinal Endoscopy-European Society of Gastrointestinal Endoscopy guideline on primary endoscopic bariatric and metabolic therapies for adults with obesity. Gastrointest Endosc. 2024 Jun. doi: 10.1016/j.gie.2023.12.004.
23. Nduma BN, et al. Endoscopic Gastric Sleeve: A Review of Literature. Cureus. 2023 Mar. doi: 10.7759/cureus.36353.
24. Abu Dayyeh BK, et al. Endoscopic sleeve gastroplasty for treatment of class 1 and 2 obesity (MERIT): a prospective, multicentre, randomised trial. Lancet. 2022 Aug. doi: 10.1016/S0140-6736(22)01280-6.
25. Gala K, et al. Outcomes of concomitant antiobesity medication use with endoscopic sleeve gastroplasty in clinical US settings. Obes Pillars. 2024 May. doi: 10.1016/j.obpill.2024.100112.
26. Chung CS, et al. Endoscopic sleeve gastroplasty combined with anti-obesity medication for better control of weight and diabetes. Clin Endosc. 2025 May. doi: 10.5946/ce.2024.274.
Introduction
The majority of patients in the United States are now overweight or obese, and as gastroenterologists we treat a number of conditions that are caused or worsened by obesity.1 Cirrhosis related to metabolic associated fatty liver disease (MAFLD) is now a leading indication for liver transplantation in the US2 and obesity is a clear risk factor for all major malignancies of the GI tract, including esophageal, gastric cardia, pancreatic, liver, gallbladder, colon, and rectum.3 Obesity is associated with dysbiosis and impacts barrier function: increasing permeability, abnormal gut bacterial translocation, and inflammation.4 It is more common than malnutrition in our patients with inflammatory bowel disease (IBD), where it impacts response to biologic drugs, increases the technical difficulty of surgeries, such as IPAA, and is associated with worse surgical outcomes.5 Furthermore, patients with obesity may be less likely to undergo preventative cancer screenings and are at increased risk related to sedation for endoscopic procedures.6 With over 40% of Americans suffering from obesity, and increasingly effective treatments available,
Understanding the Mechanisms of Obesity
There are complex orexigenic and anorexigenic brain pathways in the hypothalamus which control global energy balance.7 Obesity results when energy intake exceeds energy expenditure. While overeating and a sedentary lifestyle are commonly blamed, there are a number of elements that contribute, including genetics, medical conditions, medications, psychosocial factors, and environmental components. For example, sleep loss contributes to weight gain by several mechanisms including increasing ghrelin and decreasing leptin levels, thereby increasing hunger and appetite, as well as by decreasing insulin sensitivity and increasing cortisol. Subjects exposed to sleep deprivation in research settings take in 550 kcal more the following day.8 Medications used commonly in GI practice including corticosteroids, antihistamines, propranolol, and amitriptyline, are obesogenic9 and cannabis can impact hypothalamic pathways to stimulate hunger.10
When patients diet or exercise to lose weight, as we have traditionally advised, there are strong hormonal changes and metabolic adaptations that occur to preserve the defended fat mass or “set point.” Loss of adipose tissue results in decreased production of leptin, a hormone that stimulates satiety pathways and inhibits orexigenic pathways, greatly increasing hunger and cravings. Increases in ghrelin production by the stomach decreases perceptions of fullness. With weight loss, energy requirements decrease, and muscles become more efficient, meaning fewer kcal are needed to maintain bodily processes.11 Eventually a plateau is reached, while motivation to diet and restraint around food wane, and hedonistic (reward) pathways are activated. These powerful factors result in the regain of lost weight within one year in the majority of patients.
Implementing Weight Management into GI Practice
Given the stigma and bias around obesity, patients often feel shame and vulnerability around the condition. It is important to have empathy in your approach, asking permission to discuss weight and using patient-first language (e.g. “patient with obesity” not “obese patient”). While BMI is predictive of health outcomes, it does not measure body fat percentage and may be misleading, such as in muscular individuals. Other measures of adiposity including waist circumference and body composition testing, such as with DEXA, may provide additional data. A BMI of 30 or above defines obesity, though newer definitions incorporate related symptoms, organ disfunction, and metabolic abnormalities into the term “clinical obesity.”12 Asian patients experience metabolic complications at a lower BMI, and therefore the definition of obese is 27.5kg/m2 in this population.
Begin by taking a weight history. Has this been a lifelong struggle or is there a particular life circumstance, such as working a third shift or recent pregnancy which precipitated weight gain? Patients should be asked about binge eating or eating late into the evening or waking at night to eat, as these disordered eating behaviors are managed with specific medications and behavioral therapies. Inquire about sleep duration and quality and refer for a sleep study if there is suspicion for obstructive sleep apnea. Other weight-related comorbidities including hyperlipidemia, type 2 diabetes mellitus (T2DM), and MAFLD should be considered and merit a more aggressive approach, as does more severe obesity (class III, BMI ≥40). Questions about marijuana and alcohol use as well as review of the medication list for obesogenic medications can provide further insight into modifiable contributing factors.
Pillars of Weight Management
The internet is awash with trendy diet recommendations, and widespread misconceptions about obesity management are even ingrained into how physicians approach the disease. It is critical to remember that this is not a consequence of bad choices or lack of self-control. Exercise alone is insufficient to result in significant weight loss.13 Furthermore, whether it is through low fat, low carb, or intermittent fasting, weight loss will occur with calorie deficit.14 Evidence-based diet and lifestyle recommendations to lay the groundwork for success should be discussed at each visit (see Table 1). The Mediterranean diet is recommended for weight loss as well as for several GI disorders (i.e., MAFLD and IBD) and is the optimal eating strategy for cardiovascular health.15 Patients should be advised to engage in 150 minutes of moderate exercise per week, such as brisk walking, and should incorporate resistance training to build muscle and maintain bone density.
Anti-obesity Medications
There are a number of medications, either FDA approved or used off label, for treatment of obesity (see Table 2).16 All are indicated for patients with a BMI of ≥ 30 kg/m2 or for those with a BMI between 27-29 kg/m2 with weight-related comorbidities and should be used in combination with diet and lifestyle interventions. None are approved or safe in pregnancy. Mechanisms of action vary by type and include decreased appetite, increased energy expenditure, improved insulin sensitivity, and interfere with absorption.
The newest and most effective anti-obesity medications (AOM), the glucagon-like peptide-1 receptor agonists (GLP-1 RA) are derived from gut hormones secreted in the distal small bowel and colon in response to a meal, which function to delay gastric emptying, increase insulin release from the pancreas, and reduce hepatic gluconeogenesis. Central nervous system effects are not yet entirely understood, but function to decrease appetite and increase satiety. Initially developed for treatment of T2DM, observed weight reduction in patients treated with GLP-1 RA led to clinical trials for treatment of obesity. Semaglutide treatment resulted in weight reduction of 16.9% of total body weight (TBW), and one third of subjects lost ≥ 20% of TBW.17 Tirzepatide combines GLP-1 RA and a gastric inhibitory polypeptide (GIP) receptor agonist, which also has an incretin effect and functions to slow gastric emptying. In the pivotal SURMOUNT trial, approximately 58% of patients achieved ≥20% loss of TBW18 with 15mg weekly dosing of tirzepatide. This class of drugs is a logical choice in patients with T2DM and obesity. Long-term treatment appears necessary, as patients typically regain two-thirds of lost weight within a year after GLP-1 RA are stopped.
Based on tumors observed in rodents, GLP-1 RA are contraindicated in patients with a personal or family history of multiple endocrine neoplasia type 2 (MEN II) or medullary thyroid cancer. These tumors have not been observed in humans treated with GLP-1 RA. They should be used with caution in patients with history of pancreatitis, gastroparesis, or diabetic retinopathy, though a recent systematic review and meta-analysis suggests showed little to no increased risk for biliary events from GLP-1 RA.19 Side effects are most commonly gastrointestinal in nature (nausea, reflux, constipation or diarrhea) and are typically most severe with initiation of the drug and with dose escalation. Side effects can be mitigated by initiating these drugs at lowest doses and gradually titrating up (every four weeks) based on effectiveness and tolerability. Antisecretory, antiemetic, and laxative medications can also be used to help manage GLP-1 RA related side effects.
There is no reason to escalate to highest doses if patients are experiencing weight loss and reduction in food cravings at lower doses. Both semaglutide and tirzepatide are administered subcutaneously every seven days. Once patients have reached goal weight, they can either continue maintenance therapy at that same dose/interval, or if motivated to do so, may gradually reduce the weekly dose in a stepwise approach to determine the minimally effective dose to maintain weight loss. There are not yet published maintenance studies to guide this process. Currently the price of GLP-1 RA and inconsistent insurance coverage make them inaccessible to many patients. The manufacturers of both semaglutide and tirzepatide offer direct to consumer pricing and home delivery.
Bariatric Surgery
In patients with higher BMI (≥35kg/m2) or those with BMI ≥30kg/m2 and obesity-related metabolic disease and the desire to avoid lifelong medications or who fail or are intolerant of AOM, bariatric options should be considered.20 Sleeve gastrectomy has become the most performed surgery for treatment of obesity. It is a restrictive procedure, removing 80% of the stomach, but a drop in circulating levels of ghrelin afterwards also leads to decreased feelings of hunger. It results in weight loss of 25-30% TBW loss. It is not a good choice for patients who suffer from severe GERD, as this typically worsens afterwards; furthermore, de novo Barrett’s has been observed in nearly 6% of patients who undergo sleeve gastrectomy.21
Roux-en-Y gastric bypass is a restrictive and malabsorptive procedure, resulting in 30-35% TBW loss. It has beneficial and immediate metabolic effects, including increased release of endogenous GLP-1, which leads to improvements in weight-related T2DM. The newer single anastomosis duodenal-ileal bypass with sleeve gastrectomy (SADI-S) starts with a sleeve gastrectomy, making a smaller tube-shaped stomach. The duodenum is divided just after the stomach and then a loop of ileum is brought up and connected to the stomach (see Figure 1). This procedure is highly effective, with patients losing 75-95% of excess body weight and is becoming a preferred option for patients with greater BMI (≥50kg/m2). It is also an option for patients who have already had a sleeve gastrectomy and are seeking further weight loss. Because there is only one anastomosis, perioperative complications, such as anastomotic leaks, are reduced. The risk of micronutrient deficiencies is present with all malabsorptive procedures, and these patients must supplement with multivitamins, iron, vitamin D, and calcium.
Endoscopic Therapies
Endoscopic bariatric and metabolic therapies (EBMTs) have been increasingly studied and utilized, and this less invasive option may be more appropriate for or attractive to many patients. Intragastric balloons, which reduce meal volume and delay gastric emptying, can be used short term only (six months) resulting in loss of about 6.9% of total body weight (TBW) greater than lifestyle modification (LM) alone, and may be considered in limited situations, such as need for pre-operative weight loss to reduce risks in very obese individuals.22
Endoscopic gastric remodeling (EGR), also known as endoscopic sleeve gastrectomy (ESG), is a purely restrictive procedure in which the stomach is cinched to resize and reshape using an endoscopic suturing device (see Figure 2).23 It is an option for patients with class 1 or 2 obesity, with data from a randomized controlled trial in this population demonstrating mean percentage of TBW loss of 13.6% at 52 weeks compared to 0.8% in those treated with LM alone.24 A recent meta-analysis of 21 observational studies, including patients with higher BMIs (32.5 to 49.9 kg/m2) showed pooled average weight loss of 17.3% TBW at 12 months with EGR.22 This procedure has potential advantages of fewer complications, quicker recovery, and much less new-onset GERD compared to laparoscopic sleeve gastrectomy. Furthermore, it may be utilized in combination with AOMs to achieve optimum weight loss and metabolic outcomes.25,26 Potential adverse events include abdominal pain, nausea and vomiting (which may be severe), as well as rare instances of intra/extra luminal bleeding or abdominal abscess requiring drainage.22
Recent joint American/European Gastrointestinal Endoscopy guidelines suggest the use of EBMTs plus lifestyle modification in patients with a BMI of ≥ 30 kg/m2, or with a BMI of 27.0-29.9 kg/m2 with at least 1 obesity-related comorbidity.22 Small bowel interventions including duodenal-jejunal bypass liner and duodenal mucosal resurfacing are being investigated for patients with obesity and type 2 diabetes but not yet commercially available.
Conclusion
Given the overlap of obesity with many GI disorders, it is entirely appropriate for gastroenterologists to consider it worthy of aggressive treatment, particularly in patients with MAFLD and other serious weight related comorbidities. With a compassionate and empathetic approach, and a number of highly effective medical, endoscopic, and surgical therapies now available, weight management has the potential to be extremely rewarding when implemented in GI practice.
Dr. Kelly is based in the Department of Medicine, Division of Gastroenterology, Brigham and Women’s Hospital, and Harvard Medical School, both in Boston, Massachusetts. She serves on the clinical advisory board for OpenBiome (unpaid) and has served on an advisory board for Eli Lilly and Company.
References
1. Hales CM, et al. Prevalence of Obesity and Severe Obesity Among Adults: United States, 2017-2018. NCHS Data Brief 2020 Feb:(360):1–8.
2. Pais R, et al. NAFLD and liver transplantation: Current burden and expected challenges. J Hepatol. 2016 Dec. doi: 10.1016/j.jhep.2016.07.033.
3. Lauby-Secretan B, et al. Body Fatness and Cancer--Viewpoint of the IARC Working Group. N Engl J Med. 2016 Aug. doi: 10.1056/NEJMsr1606602.
4. Kim A. Dysbiosis: A Review Highlighting Obesity and Inflammatory Bowel Disease. J Clin Gastroenterol. 2015 Nov-Dec. doi: 10.1097/MCG.0000000000000356.
5. Singh S, et al. Obesity in IBD: epidemiology, pathogenesis, disease course and treatment outcomes. Nat Rev Gastroenterol Hepatol. 2017 Feb. doi: 10.1038/nrgastro.2016.181.
6. Sundararaman L, Goudra B. Sedation for GI Endoscopy in the Morbidly Obese: Challenges and Possible Solutions. J Clin Med. 2024 Aug. doi: 10.3390/jcm13164635.
7. Bombassaro B, et al. The hypothalamus as the central regulator of energy balance and its impact on current and future obesity treatments. Arch Endocrinol Metab. 2024 Nov. doi: 10.20945/2359-4292-2024-0082.
8. Beccuti G, Pannain S. Sleep and obesity. Curr Opin Clin Nutr Metab Care. 2011 Jul. doi: 10.1097/MCO.0b013e3283479109.
9. Desalermos A, et al. Effect of Obesogenic Medications on Weight-Loss Outcomes in a Behavioral Weight-Management Program. Obesity (Silver Spring). 2019 May. doi: 10.1002/oby.22444.
10. Lord MN, Noble EE. Hypothalamic cannabinoid signaling: Consequences for eating behavior. Pharmacol Res Perspect. 2024 Oct. doi: 10.1002/prp2.1251.
11. Farhana A, Rehman A. Metabolic Consequences of Weight Reduction. [Updated 2023 Jul 10]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2025 Jan. Available from: https://www.ncbi.nlm.nih.gov/books/NBK572145/.
12. Rubino F, et al. Definition and diagnostic criteria of clinical obesity. Lancet Diabetes Endocrinol. 2025 Mar. doi: 10.1016/S2213-8587(24)00316-4.
13. Cox CE. Role of Physical Activity for Weight Loss and Weight Maintenance. Diabetes Spectr. 2017 Aug. doi: 10.2337/ds17-0013.
14. Chaput JP, et al. Widespread misconceptions about obesity. Can Fam Physician. 2014 Nov. PMID: 25392431.
15. Muscogiuri G, et al. Mediterranean Diet and Obesity-related Disorders: What is the Evidence? Curr Obes Rep. 2022 Dec. doi: 10.1007/s13679-022-00481-1.
16. Gudzune KA, Kushner RF. Medications for Obesity: A Review. JAMA. 2024 Aug. doi: 10.1001/jama.2024.10816.
17. Wilding JPH, et al. Once-Weekly Semaglutide in Adults with Overweight or Obesity. N Engl J Med. 2021 Feb. doi: 10.1056/NEJMoa2032183.
18. Jastreboff AM, et al. Tirzepatide Once Weekly for the Treatment of Obesity. N Engl J Med. 2022 Jun. doi: 10.1056/NEJMoa2206038.
19. Chiang CH, et al. Glucagon-Like Peptide-1 Receptor Agonists and Gastrointestinal Adverse Events: A Systematic Review and Meta-Analysis. Gastroenterology. 2025 Nov. doi: 10.1053/j.gastro.2025.06.003.
20. Aderinto N, et al. Recent advances in bariatric surgery: a narrative review of weight loss procedures. Ann Med Surg (Lond). 2023 Nov. doi: 10.1097/MS9.0000000000001472.
21. Chandan S, et al. Risk of De Novo Barrett’s Esophagus Post Sleeve Gastrectomy: A Systematic Review and Meta-Analysis of Studies With Long-Term Follow-Up. Clin Gastroenterol Hepatol. 2025 Jan. doi: 10.1016/j.cgh.2024.06.041.
22. Jirapinyo P, et al. American Society for Gastrointestinal Endoscopy-European Society of Gastrointestinal Endoscopy guideline on primary endoscopic bariatric and metabolic therapies for adults with obesity. Gastrointest Endosc. 2024 Jun. doi: 10.1016/j.gie.2023.12.004.
23. Nduma BN, et al. Endoscopic Gastric Sleeve: A Review of Literature. Cureus. 2023 Mar. doi: 10.7759/cureus.36353.
24. Abu Dayyeh BK, et al. Endoscopic sleeve gastroplasty for treatment of class 1 and 2 obesity (MERIT): a prospective, multicentre, randomised trial. Lancet. 2022 Aug. doi: 10.1016/S0140-6736(22)01280-6.
25. Gala K, et al. Outcomes of concomitant antiobesity medication use with endoscopic sleeve gastroplasty in clinical US settings. Obes Pillars. 2024 May. doi: 10.1016/j.obpill.2024.100112.
26. Chung CS, et al. Endoscopic sleeve gastroplasty combined with anti-obesity medication for better control of weight and diabetes. Clin Endosc. 2025 May. doi: 10.5946/ce.2024.274.
Why Your Support Matters Now
Federal research funding is uncertain, but discovery can’t wait.
As an AGA member, you can help the AGA Research Foundation ensure that critical digestive health research continues, regardless of the circumstances. With your donation, you will help fuel the next breakthroughs in digestive health by backing bold ideas and early-career investigators when federal dollars fall short.
By donating today, you become a vital part of the solution, helping to provide the necessary funding to foster scientific discovery and enhance patient care for those affected by digestive diseases.
Your support will transform lives and accelerate medical breakthroughs.
Donate by December 31 to receive a tax-credit in 2025. Make your gift by visiting www.foundation.gastro.org.
Federal research funding is uncertain, but discovery can’t wait.
As an AGA member, you can help the AGA Research Foundation ensure that critical digestive health research continues, regardless of the circumstances. With your donation, you will help fuel the next breakthroughs in digestive health by backing bold ideas and early-career investigators when federal dollars fall short.
By donating today, you become a vital part of the solution, helping to provide the necessary funding to foster scientific discovery and enhance patient care for those affected by digestive diseases.
Your support will transform lives and accelerate medical breakthroughs.
Donate by December 31 to receive a tax-credit in 2025. Make your gift by visiting www.foundation.gastro.org.
Federal research funding is uncertain, but discovery can’t wait.
As an AGA member, you can help the AGA Research Foundation ensure that critical digestive health research continues, regardless of the circumstances. With your donation, you will help fuel the next breakthroughs in digestive health by backing bold ideas and early-career investigators when federal dollars fall short.
By donating today, you become a vital part of the solution, helping to provide the necessary funding to foster scientific discovery and enhance patient care for those affected by digestive diseases.
Your support will transform lives and accelerate medical breakthroughs.
Donate by December 31 to receive a tax-credit in 2025. Make your gift by visiting www.foundation.gastro.org.
Resmetirom Reduces Liver Stiffness in MASH Cirrhosis
PHOENIX — according to the results of a new study.
As well as showing sustained reduction in liver stiffness on vibration-controlled transient elastography (VCTE) after 2 years of treatment with resmetirom, the study suggested that up to 35% of patients could “potentially reverse their cirrhosis,” said lead author Naim Alkhouri, MD, chief medical officer and director of the steatotic liver program at Arizona Liver Health in Phoenix.
Alkhouri presented data on patients with compensated cirrhosis from a 1-year open-label extension of the already-completed MAESTRO-NAFLD-1 study at American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
The FDA approved resmetirom (Rezdiffra, Madrigal Pharmaceuticals) in 2024 for MASH and moderate-to-advanced liver fibrosis (consistent with stage F2 and F3 disease), to be used in conjunction with diet and exercise. The agency granted the once-daily, oral thyroid hormone receptor beta-selective agonist breakthrough therapy designation and priority review.
According to the American Liver Foundation, about 5% of adults in the US have MASH — one of the leading causes of liver transplantation in the country. There is currently no FDA-approved therapy for compensated cirrhosis caused by MASH, said Alkhouri. Patients with MASH cirrhosis with clinically significant portal hypertension (CSPH) experience major adverse liver outcomes.
In an analysis of 122 patients with Child Pugh A MASH cirrhosis who completed both a year in an open-label arm of MAESTRO-NAFLD-1 and a 1-year extension, 113 (93%) completed 2 years of treatment with resmetirom (80 mg). Of the 122 patients, only 114 received MRI proton density fat fraction (MRI-PDFF) testing — 93 (82%) had a baseline of > 5% indicating cirrhosis, while 21 (18%) had an MRI-PDFF of < 5%.
Patients were assessed for baseline portal hypertension (Baveno VII) with FibroScan VCTE and platelet count, which was confirmed using magnetic resonance elastography (MRE). Noninvasive biomarkers and imaging were analyzed at baseline and out to 2 years.
At baseline, 63% of patients were categorized as probable/definitive CSPH (Baveno VII). At 1 year of treatment with resmetirom, 20% of patients who were CSPH positive no longer met the criteria, and at 2 years this number had increased to 28%.
After 2 years of treatment, more than half of the patients had a sustained reduction in liver stiffness of more than 25%, as measured by VCTE; and 35% of patients with confirmed F4 at baseline (liver biopsy F4 and/or platelets < 140/MRE ≥ 5 with VCTE ≥ 15) had a conversion to F3.
Patients taking resmetirom also had significant improvements in MRI-PDFF and MRE at 2 years. Almost a third of those with a baseline MRI-PDFF > 5% improved, while 43% of those with a baseline of < 5% improved.
Although 113 patients had an adverse event — primarily gastrointestinal — the observed events were consistent with previous studies. Twenty-seven patients had a serious adverse event, but none were related to the study drug, said Alkhouri. The researchers reported that only 8% of patients discontinued the medication.
Changing the Treatment Landscape for MASH-Related Cirrhosis
When asked to comment by GI & Hepatology News, Hazem Ayesh, MD, an endocrinologist at Deaconess Health System, Evansville, Indiana, said that “reversal of cirrhosis from F4 to F3 and reduction of portal hypertension are quite surprising, since cirrhosis typically progresses slowly.”
Ayesh said it was notable that the researchers had used imaging to confirm both functional and hemodynamic improvements in liver architecture not just biochemical changes. Given the results, “clinicians may reasonably consider off-label use in selected compensated patients until more outcome data become available,” he said.
A phase 3 study is underway to examine those outcomes, MAESTRO-NASH OUTCOMES, with 845 patients with MASH cirrhosis, and should be completed in 2027.
“Resmetirom could change the treatment landscape for MASH-related cirrhosis,” said Ayesh, adding, “this drug offers a chance to target the disease process itself,” while other therapies focus on preventing complications.
“For patients without access to liver transplant, a therapy that can slow or reverse disease progression could be transformative,” he told GI & Hepatology News.
Alkhouri disclosed that he is a consultant and speaker for Madrigal Pharmaceuticals. Three coauthors are Madrigal employees and own stock options in the company. Two coauthors are Madrigal consultants and advisers. Ayesh reported no conflicts.
A version of this article appeared on Medscape.com.
PHOENIX — according to the results of a new study.
As well as showing sustained reduction in liver stiffness on vibration-controlled transient elastography (VCTE) after 2 years of treatment with resmetirom, the study suggested that up to 35% of patients could “potentially reverse their cirrhosis,” said lead author Naim Alkhouri, MD, chief medical officer and director of the steatotic liver program at Arizona Liver Health in Phoenix.
Alkhouri presented data on patients with compensated cirrhosis from a 1-year open-label extension of the already-completed MAESTRO-NAFLD-1 study at American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
The FDA approved resmetirom (Rezdiffra, Madrigal Pharmaceuticals) in 2024 for MASH and moderate-to-advanced liver fibrosis (consistent with stage F2 and F3 disease), to be used in conjunction with diet and exercise. The agency granted the once-daily, oral thyroid hormone receptor beta-selective agonist breakthrough therapy designation and priority review.
According to the American Liver Foundation, about 5% of adults in the US have MASH — one of the leading causes of liver transplantation in the country. There is currently no FDA-approved therapy for compensated cirrhosis caused by MASH, said Alkhouri. Patients with MASH cirrhosis with clinically significant portal hypertension (CSPH) experience major adverse liver outcomes.
In an analysis of 122 patients with Child Pugh A MASH cirrhosis who completed both a year in an open-label arm of MAESTRO-NAFLD-1 and a 1-year extension, 113 (93%) completed 2 years of treatment with resmetirom (80 mg). Of the 122 patients, only 114 received MRI proton density fat fraction (MRI-PDFF) testing — 93 (82%) had a baseline of > 5% indicating cirrhosis, while 21 (18%) had an MRI-PDFF of < 5%.
Patients were assessed for baseline portal hypertension (Baveno VII) with FibroScan VCTE and platelet count, which was confirmed using magnetic resonance elastography (MRE). Noninvasive biomarkers and imaging were analyzed at baseline and out to 2 years.
At baseline, 63% of patients were categorized as probable/definitive CSPH (Baveno VII). At 1 year of treatment with resmetirom, 20% of patients who were CSPH positive no longer met the criteria, and at 2 years this number had increased to 28%.
After 2 years of treatment, more than half of the patients had a sustained reduction in liver stiffness of more than 25%, as measured by VCTE; and 35% of patients with confirmed F4 at baseline (liver biopsy F4 and/or platelets < 140/MRE ≥ 5 with VCTE ≥ 15) had a conversion to F3.
Patients taking resmetirom also had significant improvements in MRI-PDFF and MRE at 2 years. Almost a third of those with a baseline MRI-PDFF > 5% improved, while 43% of those with a baseline of < 5% improved.
Although 113 patients had an adverse event — primarily gastrointestinal — the observed events were consistent with previous studies. Twenty-seven patients had a serious adverse event, but none were related to the study drug, said Alkhouri. The researchers reported that only 8% of patients discontinued the medication.
Changing the Treatment Landscape for MASH-Related Cirrhosis
When asked to comment by GI & Hepatology News, Hazem Ayesh, MD, an endocrinologist at Deaconess Health System, Evansville, Indiana, said that “reversal of cirrhosis from F4 to F3 and reduction of portal hypertension are quite surprising, since cirrhosis typically progresses slowly.”
Ayesh said it was notable that the researchers had used imaging to confirm both functional and hemodynamic improvements in liver architecture not just biochemical changes. Given the results, “clinicians may reasonably consider off-label use in selected compensated patients until more outcome data become available,” he said.
A phase 3 study is underway to examine those outcomes, MAESTRO-NASH OUTCOMES, with 845 patients with MASH cirrhosis, and should be completed in 2027.
“Resmetirom could change the treatment landscape for MASH-related cirrhosis,” said Ayesh, adding, “this drug offers a chance to target the disease process itself,” while other therapies focus on preventing complications.
“For patients without access to liver transplant, a therapy that can slow or reverse disease progression could be transformative,” he told GI & Hepatology News.
Alkhouri disclosed that he is a consultant and speaker for Madrigal Pharmaceuticals. Three coauthors are Madrigal employees and own stock options in the company. Two coauthors are Madrigal consultants and advisers. Ayesh reported no conflicts.
A version of this article appeared on Medscape.com.
PHOENIX — according to the results of a new study.
As well as showing sustained reduction in liver stiffness on vibration-controlled transient elastography (VCTE) after 2 years of treatment with resmetirom, the study suggested that up to 35% of patients could “potentially reverse their cirrhosis,” said lead author Naim Alkhouri, MD, chief medical officer and director of the steatotic liver program at Arizona Liver Health in Phoenix.
Alkhouri presented data on patients with compensated cirrhosis from a 1-year open-label extension of the already-completed MAESTRO-NAFLD-1 study at American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
The FDA approved resmetirom (Rezdiffra, Madrigal Pharmaceuticals) in 2024 for MASH and moderate-to-advanced liver fibrosis (consistent with stage F2 and F3 disease), to be used in conjunction with diet and exercise. The agency granted the once-daily, oral thyroid hormone receptor beta-selective agonist breakthrough therapy designation and priority review.
According to the American Liver Foundation, about 5% of adults in the US have MASH — one of the leading causes of liver transplantation in the country. There is currently no FDA-approved therapy for compensated cirrhosis caused by MASH, said Alkhouri. Patients with MASH cirrhosis with clinically significant portal hypertension (CSPH) experience major adverse liver outcomes.
In an analysis of 122 patients with Child Pugh A MASH cirrhosis who completed both a year in an open-label arm of MAESTRO-NAFLD-1 and a 1-year extension, 113 (93%) completed 2 years of treatment with resmetirom (80 mg). Of the 122 patients, only 114 received MRI proton density fat fraction (MRI-PDFF) testing — 93 (82%) had a baseline of > 5% indicating cirrhosis, while 21 (18%) had an MRI-PDFF of < 5%.
Patients were assessed for baseline portal hypertension (Baveno VII) with FibroScan VCTE and platelet count, which was confirmed using magnetic resonance elastography (MRE). Noninvasive biomarkers and imaging were analyzed at baseline and out to 2 years.
At baseline, 63% of patients were categorized as probable/definitive CSPH (Baveno VII). At 1 year of treatment with resmetirom, 20% of patients who were CSPH positive no longer met the criteria, and at 2 years this number had increased to 28%.
After 2 years of treatment, more than half of the patients had a sustained reduction in liver stiffness of more than 25%, as measured by VCTE; and 35% of patients with confirmed F4 at baseline (liver biopsy F4 and/or platelets < 140/MRE ≥ 5 with VCTE ≥ 15) had a conversion to F3.
Patients taking resmetirom also had significant improvements in MRI-PDFF and MRE at 2 years. Almost a third of those with a baseline MRI-PDFF > 5% improved, while 43% of those with a baseline of < 5% improved.
Although 113 patients had an adverse event — primarily gastrointestinal — the observed events were consistent with previous studies. Twenty-seven patients had a serious adverse event, but none were related to the study drug, said Alkhouri. The researchers reported that only 8% of patients discontinued the medication.
Changing the Treatment Landscape for MASH-Related Cirrhosis
When asked to comment by GI & Hepatology News, Hazem Ayesh, MD, an endocrinologist at Deaconess Health System, Evansville, Indiana, said that “reversal of cirrhosis from F4 to F3 and reduction of portal hypertension are quite surprising, since cirrhosis typically progresses slowly.”
Ayesh said it was notable that the researchers had used imaging to confirm both functional and hemodynamic improvements in liver architecture not just biochemical changes. Given the results, “clinicians may reasonably consider off-label use in selected compensated patients until more outcome data become available,” he said.
A phase 3 study is underway to examine those outcomes, MAESTRO-NASH OUTCOMES, with 845 patients with MASH cirrhosis, and should be completed in 2027.
“Resmetirom could change the treatment landscape for MASH-related cirrhosis,” said Ayesh, adding, “this drug offers a chance to target the disease process itself,” while other therapies focus on preventing complications.
“For patients without access to liver transplant, a therapy that can slow or reverse disease progression could be transformative,” he told GI & Hepatology News.
Alkhouri disclosed that he is a consultant and speaker for Madrigal Pharmaceuticals. Three coauthors are Madrigal employees and own stock options in the company. Two coauthors are Madrigal consultants and advisers. Ayesh reported no conflicts.
A version of this article appeared on Medscape.com.
FROM ACG 2025
Patients With a Positive FIT Fail to Get Follow-Up Colonoscopies
PHOENIX — Patients with or without polyp removal in an index colonoscopy commonly receive follow-up surveillance with a fecal immunochemical test (FIT), yet many of these patients do not receive a recommended colonoscopy after a positive FIT.
“In this large US study, we found interval FITs are frequently performed in patients with and without prior polypectomy,” said first author Natalie J. Wilson, MD, of the University of Minnesota in Minneapolis, while presenting the findings at the American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
“ and colorectal cancer, regardless of polypectomy history,” Wilson said.
Guideline recommendations stress the need for follow-up surveillance with a colonoscopy, particularly in patients who have had a prior polypectomy, because of the higher risk.
Reasons patients may instead turn to FIT may include cost or other factors, she said.
To determine just how often that happens, how having a previous polypectomy affects FIT results, and how adherent patients are to follow up if a FIT result is positive, Wilson and her colleagues evaluated data from nearly 4.8 million individuals in the Veterans Health Administration Corporate Data Warehouse who underwent colonoscopy between 2000 and 2024.
Of the patients, 10.9% were found to have subsequently received interval FIT within 10 years of the index colonoscopy, and of those patients, nearly half (49.9%) had received a polypectomy at the index colonoscopy.
The average time from the colonoscopy/polypectomy to the interval FIT was 5.9 years (5.6 years in the polypectomy group vs 6.2 years in the non-polypectomy group).
Among the FIT screenings, results were positive in 17.2% of post-polypectomy patients and 14.1% of patients with no prior polypectomy, indicating a history of polypectomy to be predictive of a positive interval FIT (odds ratio [OR], 1.12; P < .0001).
Notably, while a follow-up colonoscopy is considered essential following a positive FIT result — and having a previous polypectomy should add further urgency to the matter — the study showed only 50.4% of those who had an earlier polypectomy went on to receive the recommended follow-up colonoscopy after a positive follow-up FIT, and the rate was 49.3% among those who had not received a polypectomy (P = .001).
For those who did receive a follow-up colonoscopy after a positive FIT, the duration of time to receiving the colonoscopy was longer among those who had a prior polypectomy, at 2.9 months compared with 2.5 months in the non-polypectomy group (P < .001).
Colonoscopy results following a positive FIT showed higher rates of detections among patients who had prior polypectomies than among those with no prior polypectomy, including tubular adenomas (54.7% vs 45.8%), tubulovillous adenomas (5.6% vs 4.7%), adenomas with high-grade dysplasia (0.8% vs 0.7%), sessile serrated lesions (3.52% vs 2.4%), advanced colorectal neoplasia (9.2% vs 7.9%), and colorectal cancer (3.3% vs 3.0%).
However, a prior polypectomy was not independently predictive of colorectal cancer (OR, 0.96; P = .65) or advanced colorectal neoplasia (OR, 0.97; P = .57) in the post-colonoscopy interval FIT.
The findings underscore that “positive results carried a high risk of advanced neoplasia or cancer, irrespective of prior polypectomy history,” Wilson said.
Clinicians Must ‘Do a Better Job’
Commenting on the study, William D. Chey, MD, AGAF, chief of the Division of Gastroenterology & Hepatology at the University of Michigan in Ann Arbor, noted that the study “addresses one of the biggest challenges we face as a profession, which is making sure that patients who have a positive stool test get a colonoscopy.”
He noted that the low rate of just 50% of recipients of positive FITs going on to receive a colonoscopy is consistent with what is observed in other trials.
“Other data suggests that the rate might even be significantly higher — at 70%-80%, depending upon the population and the test,” Chey told Medscape Medical News.
Reasons for the failure to receive the follow-up testing range from income restrictions (due to the high cost of a colonoscopy, especially if not covered by insurance), education, speaking a foreign language, and other factors, he said.
The relatively high rates of colon cancers detected by FIT in the study, in those with and without a prior polypectomy, along with findings from other studies “should raise questions about whether there might be a role for FIT testing in addition to colonoscopy.” However, much stronger evidence would be needed, Chey noted.
In the meantime, a key issue is “how do we do a better job of making sure that individuals who have a positive FIT test get a colonoscopy,” he said.
“I think a lot of this is going to come down to how it’s done at the primary care level.”
Chey added that in that, and any other setting, “the main message that needs to get out to people who are undergoing stool-based screening is that the stool test is only the first part of the screening process, and if it’s positive, a follow-up colonoscopy must be performed.”
“Otherwise, the stool-based test is of no value.”
Wilson had no disclosures to report. Chey’s disclosures included consulting and/or other relationships with Ardelyx, Atmo, Biomerica, Commonwealth Diagnostics International, Corprata, Dieta, Evinature, Food Marble, Gemelli, Kiwi BioScience, Modify Health, Nestlé, Phathom, Redhill, Salix/Valeant, Takeda, and Vibrant.
A version of this article appeared on Medscape.com .
PHOENIX — Patients with or without polyp removal in an index colonoscopy commonly receive follow-up surveillance with a fecal immunochemical test (FIT), yet many of these patients do not receive a recommended colonoscopy after a positive FIT.
“In this large US study, we found interval FITs are frequently performed in patients with and without prior polypectomy,” said first author Natalie J. Wilson, MD, of the University of Minnesota in Minneapolis, while presenting the findings at the American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
“ and colorectal cancer, regardless of polypectomy history,” Wilson said.
Guideline recommendations stress the need for follow-up surveillance with a colonoscopy, particularly in patients who have had a prior polypectomy, because of the higher risk.
Reasons patients may instead turn to FIT may include cost or other factors, she said.
To determine just how often that happens, how having a previous polypectomy affects FIT results, and how adherent patients are to follow up if a FIT result is positive, Wilson and her colleagues evaluated data from nearly 4.8 million individuals in the Veterans Health Administration Corporate Data Warehouse who underwent colonoscopy between 2000 and 2024.
Of the patients, 10.9% were found to have subsequently received interval FIT within 10 years of the index colonoscopy, and of those patients, nearly half (49.9%) had received a polypectomy at the index colonoscopy.
The average time from the colonoscopy/polypectomy to the interval FIT was 5.9 years (5.6 years in the polypectomy group vs 6.2 years in the non-polypectomy group).
Among the FIT screenings, results were positive in 17.2% of post-polypectomy patients and 14.1% of patients with no prior polypectomy, indicating a history of polypectomy to be predictive of a positive interval FIT (odds ratio [OR], 1.12; P < .0001).
Notably, while a follow-up colonoscopy is considered essential following a positive FIT result — and having a previous polypectomy should add further urgency to the matter — the study showed only 50.4% of those who had an earlier polypectomy went on to receive the recommended follow-up colonoscopy after a positive follow-up FIT, and the rate was 49.3% among those who had not received a polypectomy (P = .001).
For those who did receive a follow-up colonoscopy after a positive FIT, the duration of time to receiving the colonoscopy was longer among those who had a prior polypectomy, at 2.9 months compared with 2.5 months in the non-polypectomy group (P < .001).
Colonoscopy results following a positive FIT showed higher rates of detections among patients who had prior polypectomies than among those with no prior polypectomy, including tubular adenomas (54.7% vs 45.8%), tubulovillous adenomas (5.6% vs 4.7%), adenomas with high-grade dysplasia (0.8% vs 0.7%), sessile serrated lesions (3.52% vs 2.4%), advanced colorectal neoplasia (9.2% vs 7.9%), and colorectal cancer (3.3% vs 3.0%).
However, a prior polypectomy was not independently predictive of colorectal cancer (OR, 0.96; P = .65) or advanced colorectal neoplasia (OR, 0.97; P = .57) in the post-colonoscopy interval FIT.
The findings underscore that “positive results carried a high risk of advanced neoplasia or cancer, irrespective of prior polypectomy history,” Wilson said.
Clinicians Must ‘Do a Better Job’
Commenting on the study, William D. Chey, MD, AGAF, chief of the Division of Gastroenterology & Hepatology at the University of Michigan in Ann Arbor, noted that the study “addresses one of the biggest challenges we face as a profession, which is making sure that patients who have a positive stool test get a colonoscopy.”
He noted that the low rate of just 50% of recipients of positive FITs going on to receive a colonoscopy is consistent with what is observed in other trials.
“Other data suggests that the rate might even be significantly higher — at 70%-80%, depending upon the population and the test,” Chey told Medscape Medical News.
Reasons for the failure to receive the follow-up testing range from income restrictions (due to the high cost of a colonoscopy, especially if not covered by insurance), education, speaking a foreign language, and other factors, he said.
The relatively high rates of colon cancers detected by FIT in the study, in those with and without a prior polypectomy, along with findings from other studies “should raise questions about whether there might be a role for FIT testing in addition to colonoscopy.” However, much stronger evidence would be needed, Chey noted.
In the meantime, a key issue is “how do we do a better job of making sure that individuals who have a positive FIT test get a colonoscopy,” he said.
“I think a lot of this is going to come down to how it’s done at the primary care level.”
Chey added that in that, and any other setting, “the main message that needs to get out to people who are undergoing stool-based screening is that the stool test is only the first part of the screening process, and if it’s positive, a follow-up colonoscopy must be performed.”
“Otherwise, the stool-based test is of no value.”
Wilson had no disclosures to report. Chey’s disclosures included consulting and/or other relationships with Ardelyx, Atmo, Biomerica, Commonwealth Diagnostics International, Corprata, Dieta, Evinature, Food Marble, Gemelli, Kiwi BioScience, Modify Health, Nestlé, Phathom, Redhill, Salix/Valeant, Takeda, and Vibrant.
A version of this article appeared on Medscape.com .
PHOENIX — Patients with or without polyp removal in an index colonoscopy commonly receive follow-up surveillance with a fecal immunochemical test (FIT), yet many of these patients do not receive a recommended colonoscopy after a positive FIT.
“In this large US study, we found interval FITs are frequently performed in patients with and without prior polypectomy,” said first author Natalie J. Wilson, MD, of the University of Minnesota in Minneapolis, while presenting the findings at the American College of Gastroenterology (ACG) 2025 Annual Scientific Meeting.
“ and colorectal cancer, regardless of polypectomy history,” Wilson said.
Guideline recommendations stress the need for follow-up surveillance with a colonoscopy, particularly in patients who have had a prior polypectomy, because of the higher risk.
Reasons patients may instead turn to FIT may include cost or other factors, she said.
To determine just how often that happens, how having a previous polypectomy affects FIT results, and how adherent patients are to follow up if a FIT result is positive, Wilson and her colleagues evaluated data from nearly 4.8 million individuals in the Veterans Health Administration Corporate Data Warehouse who underwent colonoscopy between 2000 and 2024.
Of the patients, 10.9% were found to have subsequently received interval FIT within 10 years of the index colonoscopy, and of those patients, nearly half (49.9%) had received a polypectomy at the index colonoscopy.
The average time from the colonoscopy/polypectomy to the interval FIT was 5.9 years (5.6 years in the polypectomy group vs 6.2 years in the non-polypectomy group).
Among the FIT screenings, results were positive in 17.2% of post-polypectomy patients and 14.1% of patients with no prior polypectomy, indicating a history of polypectomy to be predictive of a positive interval FIT (odds ratio [OR], 1.12; P < .0001).
Notably, while a follow-up colonoscopy is considered essential following a positive FIT result — and having a previous polypectomy should add further urgency to the matter — the study showed only 50.4% of those who had an earlier polypectomy went on to receive the recommended follow-up colonoscopy after a positive follow-up FIT, and the rate was 49.3% among those who had not received a polypectomy (P = .001).
For those who did receive a follow-up colonoscopy after a positive FIT, the duration of time to receiving the colonoscopy was longer among those who had a prior polypectomy, at 2.9 months compared with 2.5 months in the non-polypectomy group (P < .001).
Colonoscopy results following a positive FIT showed higher rates of detections among patients who had prior polypectomies than among those with no prior polypectomy, including tubular adenomas (54.7% vs 45.8%), tubulovillous adenomas (5.6% vs 4.7%), adenomas with high-grade dysplasia (0.8% vs 0.7%), sessile serrated lesions (3.52% vs 2.4%), advanced colorectal neoplasia (9.2% vs 7.9%), and colorectal cancer (3.3% vs 3.0%).
However, a prior polypectomy was not independently predictive of colorectal cancer (OR, 0.96; P = .65) or advanced colorectal neoplasia (OR, 0.97; P = .57) in the post-colonoscopy interval FIT.
The findings underscore that “positive results carried a high risk of advanced neoplasia or cancer, irrespective of prior polypectomy history,” Wilson said.
Clinicians Must ‘Do a Better Job’
Commenting on the study, William D. Chey, MD, AGAF, chief of the Division of Gastroenterology & Hepatology at the University of Michigan in Ann Arbor, noted that the study “addresses one of the biggest challenges we face as a profession, which is making sure that patients who have a positive stool test get a colonoscopy.”
He noted that the low rate of just 50% of recipients of positive FITs going on to receive a colonoscopy is consistent with what is observed in other trials.
“Other data suggests that the rate might even be significantly higher — at 70%-80%, depending upon the population and the test,” Chey told Medscape Medical News.
Reasons for the failure to receive the follow-up testing range from income restrictions (due to the high cost of a colonoscopy, especially if not covered by insurance), education, speaking a foreign language, and other factors, he said.
The relatively high rates of colon cancers detected by FIT in the study, in those with and without a prior polypectomy, along with findings from other studies “should raise questions about whether there might be a role for FIT testing in addition to colonoscopy.” However, much stronger evidence would be needed, Chey noted.
In the meantime, a key issue is “how do we do a better job of making sure that individuals who have a positive FIT test get a colonoscopy,” he said.
“I think a lot of this is going to come down to how it’s done at the primary care level.”
Chey added that in that, and any other setting, “the main message that needs to get out to people who are undergoing stool-based screening is that the stool test is only the first part of the screening process, and if it’s positive, a follow-up colonoscopy must be performed.”
“Otherwise, the stool-based test is of no value.”
Wilson had no disclosures to report. Chey’s disclosures included consulting and/or other relationships with Ardelyx, Atmo, Biomerica, Commonwealth Diagnostics International, Corprata, Dieta, Evinature, Food Marble, Gemelli, Kiwi BioScience, Modify Health, Nestlé, Phathom, Redhill, Salix/Valeant, Takeda, and Vibrant.
A version of this article appeared on Medscape.com .
FROM ACG 2025
Needle-Knife Fistulotomy is Safe During ERCP, Even for Trainees
, based on results of a randomized trial.
Across procedures conducted predominantly by trainees, safety outcomes were similar between NKF and standard cannulation, and all patients were successfully cannulated, suggesting this is a broadly accessible technique, reported lead author Aleksey Novikov, MD, of the University of Florida College of Medicine, Gainesville, and colleagues, reported.
Writing in Techniques and Innovations in Gastrointestinal Endoscopy, the investigators noted that standard cannulation fails in 5-20% of cases, which has led to development of various alternative techniques, including NKF. To perform the technique, the endoscopist makes a small incision in the intraduodenal biliary segment 3-6mm above the papillary orifice, with cephalad extension until bili-ary access is achieved.
To date, four prospective studies have evaluated NKF in the hands of expert advanced endoscopists.
“These studies showed that NKF is a safe and useful technique that significantly reduces the risk of PEP in the hands of expert advanced endoscopists,” the investigators wrote. ‘The suggestion that NKF should be restricted to expert advanced endoscopists likely limits widespread use.”
To determine whether NKF is a suitable technique for less experienced endoscopists, the investigators conducted the present single-center, prospective randomized controlled trial at Thomas Jefferson University Hospital in Philadelphia.
Adults undergoing ERCP for biliary indications were randomly assigned in a 1:1 ratio to undergo primary cannulation via NKF or standard cannulation. Patients with prior sphincterotomy, ampullectomy, or unfavorable anatomy were excluded.
A total of 186 patients were randomized, with 137 ultimately included in the per-protocol analysis after exclusions for anatomic factors. Most procedures (72.3%) were performed by advanced endoscopy trainees under direct supervision, 26 procedures (19.0%) were performed by attending endoscopists without substantive prior NKF experience, and 12 (8.8%) by an attending endoscopist with NKF expertise.
“It is important to note that the majority of procedures performed in the context of this study were performed by an advanced endoscopy trainee with no NKF experience or an attending advanced endoscopist with minimal NKF experience,” the investigators wrote.
All patients received prophylactic rectal indomethacin, and cannulation attempts were capped at 20 minutes before crossover to another technique was permitted.
The primary endpoint was incidence of post-ERCP pancreatitis. Secondary endpoints included successful biliary access, time to access, and rates of bleeding and perforation.
Post-ERCP pancreatitis occurred at similar rate across groups: 6 cases (8.2%) in the standard cannulation arm and 5 cases (7.8%) in the NKF arm (P = .93). Rates of bleeding and perforation were also similar for both techniques.
Within the initial 20-minute window, biliary access rates were comparable between groups, at 75.3% and 82.2% for standard cannulation and NKF, respectively (P = .89). Allowing additional attempts or crossover, overall success rose to 100% in both arms.
Mean time to access was longer with NKF, averaging 380 seconds compared with 268 seconds for standard cannulation (P less than .05).
“NKF was essentially equivalent to standard cannulation in many aspects,” the investigators wrote, calling the two techniques “complementary.”
They also suggested that the relative equivalence between techniques “carries more weight” after considering the low level of NKF experience among participating endoscopists.
“Overall, our data support teaching advanced endoscopy trainees NKF as a primary method of biliary access in patients with favorable anatomy,” the investigators concluded.
The investigators disclosed relationships with Medtronic, Boston Scientific, and Olympus.
, based on results of a randomized trial.
Across procedures conducted predominantly by trainees, safety outcomes were similar between NKF and standard cannulation, and all patients were successfully cannulated, suggesting this is a broadly accessible technique, reported lead author Aleksey Novikov, MD, of the University of Florida College of Medicine, Gainesville, and colleagues, reported.
Writing in Techniques and Innovations in Gastrointestinal Endoscopy, the investigators noted that standard cannulation fails in 5-20% of cases, which has led to development of various alternative techniques, including NKF. To perform the technique, the endoscopist makes a small incision in the intraduodenal biliary segment 3-6mm above the papillary orifice, with cephalad extension until bili-ary access is achieved.
To date, four prospective studies have evaluated NKF in the hands of expert advanced endoscopists.
“These studies showed that NKF is a safe and useful technique that significantly reduces the risk of PEP in the hands of expert advanced endoscopists,” the investigators wrote. ‘The suggestion that NKF should be restricted to expert advanced endoscopists likely limits widespread use.”
To determine whether NKF is a suitable technique for less experienced endoscopists, the investigators conducted the present single-center, prospective randomized controlled trial at Thomas Jefferson University Hospital in Philadelphia.
Adults undergoing ERCP for biliary indications were randomly assigned in a 1:1 ratio to undergo primary cannulation via NKF or standard cannulation. Patients with prior sphincterotomy, ampullectomy, or unfavorable anatomy were excluded.
A total of 186 patients were randomized, with 137 ultimately included in the per-protocol analysis after exclusions for anatomic factors. Most procedures (72.3%) were performed by advanced endoscopy trainees under direct supervision, 26 procedures (19.0%) were performed by attending endoscopists without substantive prior NKF experience, and 12 (8.8%) by an attending endoscopist with NKF expertise.
“It is important to note that the majority of procedures performed in the context of this study were performed by an advanced endoscopy trainee with no NKF experience or an attending advanced endoscopist with minimal NKF experience,” the investigators wrote.
All patients received prophylactic rectal indomethacin, and cannulation attempts were capped at 20 minutes before crossover to another technique was permitted.
The primary endpoint was incidence of post-ERCP pancreatitis. Secondary endpoints included successful biliary access, time to access, and rates of bleeding and perforation.
Post-ERCP pancreatitis occurred at similar rate across groups: 6 cases (8.2%) in the standard cannulation arm and 5 cases (7.8%) in the NKF arm (P = .93). Rates of bleeding and perforation were also similar for both techniques.
Within the initial 20-minute window, biliary access rates were comparable between groups, at 75.3% and 82.2% for standard cannulation and NKF, respectively (P = .89). Allowing additional attempts or crossover, overall success rose to 100% in both arms.
Mean time to access was longer with NKF, averaging 380 seconds compared with 268 seconds for standard cannulation (P less than .05).
“NKF was essentially equivalent to standard cannulation in many aspects,” the investigators wrote, calling the two techniques “complementary.”
They also suggested that the relative equivalence between techniques “carries more weight” after considering the low level of NKF experience among participating endoscopists.
“Overall, our data support teaching advanced endoscopy trainees NKF as a primary method of biliary access in patients with favorable anatomy,” the investigators concluded.
The investigators disclosed relationships with Medtronic, Boston Scientific, and Olympus.
, based on results of a randomized trial.
Across procedures conducted predominantly by trainees, safety outcomes were similar between NKF and standard cannulation, and all patients were successfully cannulated, suggesting this is a broadly accessible technique, reported lead author Aleksey Novikov, MD, of the University of Florida College of Medicine, Gainesville, and colleagues, reported.
Writing in Techniques and Innovations in Gastrointestinal Endoscopy, the investigators noted that standard cannulation fails in 5-20% of cases, which has led to development of various alternative techniques, including NKF. To perform the technique, the endoscopist makes a small incision in the intraduodenal biliary segment 3-6mm above the papillary orifice, with cephalad extension until bili-ary access is achieved.
To date, four prospective studies have evaluated NKF in the hands of expert advanced endoscopists.
“These studies showed that NKF is a safe and useful technique that significantly reduces the risk of PEP in the hands of expert advanced endoscopists,” the investigators wrote. ‘The suggestion that NKF should be restricted to expert advanced endoscopists likely limits widespread use.”
To determine whether NKF is a suitable technique for less experienced endoscopists, the investigators conducted the present single-center, prospective randomized controlled trial at Thomas Jefferson University Hospital in Philadelphia.
Adults undergoing ERCP for biliary indications were randomly assigned in a 1:1 ratio to undergo primary cannulation via NKF or standard cannulation. Patients with prior sphincterotomy, ampullectomy, or unfavorable anatomy were excluded.
A total of 186 patients were randomized, with 137 ultimately included in the per-protocol analysis after exclusions for anatomic factors. Most procedures (72.3%) were performed by advanced endoscopy trainees under direct supervision, 26 procedures (19.0%) were performed by attending endoscopists without substantive prior NKF experience, and 12 (8.8%) by an attending endoscopist with NKF expertise.
“It is important to note that the majority of procedures performed in the context of this study were performed by an advanced endoscopy trainee with no NKF experience or an attending advanced endoscopist with minimal NKF experience,” the investigators wrote.
All patients received prophylactic rectal indomethacin, and cannulation attempts were capped at 20 minutes before crossover to another technique was permitted.
The primary endpoint was incidence of post-ERCP pancreatitis. Secondary endpoints included successful biliary access, time to access, and rates of bleeding and perforation.
Post-ERCP pancreatitis occurred at similar rate across groups: 6 cases (8.2%) in the standard cannulation arm and 5 cases (7.8%) in the NKF arm (P = .93). Rates of bleeding and perforation were also similar for both techniques.
Within the initial 20-minute window, biliary access rates were comparable between groups, at 75.3% and 82.2% for standard cannulation and NKF, respectively (P = .89). Allowing additional attempts or crossover, overall success rose to 100% in both arms.
Mean time to access was longer with NKF, averaging 380 seconds compared with 268 seconds for standard cannulation (P less than .05).
“NKF was essentially equivalent to standard cannulation in many aspects,” the investigators wrote, calling the two techniques “complementary.”
They also suggested that the relative equivalence between techniques “carries more weight” after considering the low level of NKF experience among participating endoscopists.
“Overall, our data support teaching advanced endoscopy trainees NKF as a primary method of biliary access in patients with favorable anatomy,” the investigators concluded.
The investigators disclosed relationships with Medtronic, Boston Scientific, and Olympus.
FROM TECHNIQUES AND INNOVATIONS IN GASTROINTESTINAL ENDOSCOPY
Polypectomy Best Practices Not Routinely Followed in US
, an analysis of more than 1.8 million colonoscopies found.
“We expected to find some variations in polypectomy technique, but the results were surprising; overall, cold snare usage was much lower than expected, given that this is the recommended method for removing most small polyps,” Seth Crockett, MD, MPH, AGAF, professor of medicine, Division of Gastroenterology and Hepatology, Oregon Health & Science University, Portland, told GI & Hepatology News.
The study was published in the October issue of The American Journal of Gastroenterology.
Using Gastroenterology Quality Improvement Consortium Registry data, Crockett and colleagues analyzed more than 1.8 million colonoscopies performed by 4601 endoscopists between 2019 and 2022 across 702 sites. All colonoscopies involved removal of polyps < 1 cm; lesions of this size are commonly found in screening colonoscopies, and detection is crucial to early cancer prevention.
The researchers found striking variation in polypectomy technique. Guideline-based cold snare polypectomy (CSP) was used in only 58% of cases (and as a single device in only 51%), whereas cold forceps polypectomy (CFP) accounted for 35% and hot snare polypectomy (HSP) for 11%.
The fact that CSP was used in fewer than 60% of cases represents “an important quality gap,” the authors wrote, adding that the fact that more than 10% of colonoscopies used HSP suggests that “some patients harboring low-risk lesions may be exposed to excess risk related to these practice variations.”
And while recommendations around the use of CFP are more nuanced (based largely on forceps type and polyp size), the “high frequency of CFP also suggests nonadherence to best practices,” they noted.
Gastroenterologists More Apt to Follow Guidance
Polypectomy technique varied by polyp type. CFP was more common in cases where only hyperplastic polyps were removed compared with cases with tubular adenomas (45% vs 30%, respectively). CSP use was highest in cases where only sessile serrated lesions were removed (66%) compared with cases with only tubular adenomas (61%) or hyperplastic polyps (37%).
There was also considerable variation by provider specialty.
Gastroenterologists (compared with non-GI specialists) used HSP less (4% vs 8%) and CSP more (40% vs 34%). Colonoscopies performed with GI fellows were more likely to use CFP (31% vs 21%) and less likely to use HSP (1% vs 5%) compared with colonoscopies without fellows.
“It was somewhat reassuring that colonoscopies performed by gastroenterologists were more likely to adhere to guideline recommendations, which suggests that dedicated endoscopy training is likely an important factor driving high-quality colonoscopy,” Crockett told GI & Hepatology News.
“Unexpectedly,” polypectomy technique also differed dramatically by geographic region, he said. CFP was used more than twice as often in the Northeast (31%) as in the Midwest (14%), whereas CSP was used more frequently in the Midwest (52%) than in the Northeast (32%).
“We suspect that much of the variation is related to differences in training, preferences, habits, and evolution of colonoscopy practice over time,” Crockett said. “More research is needed on the underlying drivers of this variation, and how differences in polypectomy technique impact both the safety and efficacy of colonoscopy to prevent colorectal cancer,” he said.
“As a specialty, we need to continue to work on disseminating guideline recommendations regarding colonoscopy quality, monitoring adherence to evidence-based practices, and working to address gaps in quality where they exist,” he added.
‘Concerning, Surprising, and Disappointing’
David Johnson, MD, professor of medicine and chief of gastroenterology at Eastern Virginia Medical School and Old Dominion University in Norfolk, called the results “concerning, surprising, and disappointing” and not consistent with the most current quality recommendations that advocate cold snare for most polyps less than 1 cm in size.
“Cold snare polypectomy has been shown not only to be more effective but also takes less time to perform, relative to cold biopsy,” said Johnson, who wasn’t involved in the study.
Johnson told GI & Hepatology News, “Inadequate lesion resection and variation in resection quality are major issues for colonoscopy quality. Those who perform colonoscopies need to be up-to-date with evidence-based quality standards — as well as held accountable if [there is] discordant practice — if we are to optimize the cancer prevention benefits of quality colonoscopy.”
Limitations of the current analysis include lack of extensive patient information and inability to further stratify polyps < 1 cm by size.
The study had no commercial funding. Crockett had no disclosures. Johnson disclosed serving as a director, officer, partner, employee, advisor, consultant, or trustee for ISOThrive.
A version of this article appeared on Medscape.com.
, an analysis of more than 1.8 million colonoscopies found.
“We expected to find some variations in polypectomy technique, but the results were surprising; overall, cold snare usage was much lower than expected, given that this is the recommended method for removing most small polyps,” Seth Crockett, MD, MPH, AGAF, professor of medicine, Division of Gastroenterology and Hepatology, Oregon Health & Science University, Portland, told GI & Hepatology News.
The study was published in the October issue of The American Journal of Gastroenterology.
Using Gastroenterology Quality Improvement Consortium Registry data, Crockett and colleagues analyzed more than 1.8 million colonoscopies performed by 4601 endoscopists between 2019 and 2022 across 702 sites. All colonoscopies involved removal of polyps < 1 cm; lesions of this size are commonly found in screening colonoscopies, and detection is crucial to early cancer prevention.
The researchers found striking variation in polypectomy technique. Guideline-based cold snare polypectomy (CSP) was used in only 58% of cases (and as a single device in only 51%), whereas cold forceps polypectomy (CFP) accounted for 35% and hot snare polypectomy (HSP) for 11%.
The fact that CSP was used in fewer than 60% of cases represents “an important quality gap,” the authors wrote, adding that the fact that more than 10% of colonoscopies used HSP suggests that “some patients harboring low-risk lesions may be exposed to excess risk related to these practice variations.”
And while recommendations around the use of CFP are more nuanced (based largely on forceps type and polyp size), the “high frequency of CFP also suggests nonadherence to best practices,” they noted.
Gastroenterologists More Apt to Follow Guidance
Polypectomy technique varied by polyp type. CFP was more common in cases where only hyperplastic polyps were removed compared with cases with tubular adenomas (45% vs 30%, respectively). CSP use was highest in cases where only sessile serrated lesions were removed (66%) compared with cases with only tubular adenomas (61%) or hyperplastic polyps (37%).
There was also considerable variation by provider specialty.
Gastroenterologists (compared with non-GI specialists) used HSP less (4% vs 8%) and CSP more (40% vs 34%). Colonoscopies performed with GI fellows were more likely to use CFP (31% vs 21%) and less likely to use HSP (1% vs 5%) compared with colonoscopies without fellows.
“It was somewhat reassuring that colonoscopies performed by gastroenterologists were more likely to adhere to guideline recommendations, which suggests that dedicated endoscopy training is likely an important factor driving high-quality colonoscopy,” Crockett told GI & Hepatology News.
“Unexpectedly,” polypectomy technique also differed dramatically by geographic region, he said. CFP was used more than twice as often in the Northeast (31%) as in the Midwest (14%), whereas CSP was used more frequently in the Midwest (52%) than in the Northeast (32%).
“We suspect that much of the variation is related to differences in training, preferences, habits, and evolution of colonoscopy practice over time,” Crockett said. “More research is needed on the underlying drivers of this variation, and how differences in polypectomy technique impact both the safety and efficacy of colonoscopy to prevent colorectal cancer,” he said.
“As a specialty, we need to continue to work on disseminating guideline recommendations regarding colonoscopy quality, monitoring adherence to evidence-based practices, and working to address gaps in quality where they exist,” he added.
‘Concerning, Surprising, and Disappointing’
David Johnson, MD, professor of medicine and chief of gastroenterology at Eastern Virginia Medical School and Old Dominion University in Norfolk, called the results “concerning, surprising, and disappointing” and not consistent with the most current quality recommendations that advocate cold snare for most polyps less than 1 cm in size.
“Cold snare polypectomy has been shown not only to be more effective but also takes less time to perform, relative to cold biopsy,” said Johnson, who wasn’t involved in the study.
Johnson told GI & Hepatology News, “Inadequate lesion resection and variation in resection quality are major issues for colonoscopy quality. Those who perform colonoscopies need to be up-to-date with evidence-based quality standards — as well as held accountable if [there is] discordant practice — if we are to optimize the cancer prevention benefits of quality colonoscopy.”
Limitations of the current analysis include lack of extensive patient information and inability to further stratify polyps < 1 cm by size.
The study had no commercial funding. Crockett had no disclosures. Johnson disclosed serving as a director, officer, partner, employee, advisor, consultant, or trustee for ISOThrive.
A version of this article appeared on Medscape.com.
, an analysis of more than 1.8 million colonoscopies found.
“We expected to find some variations in polypectomy technique, but the results were surprising; overall, cold snare usage was much lower than expected, given that this is the recommended method for removing most small polyps,” Seth Crockett, MD, MPH, AGAF, professor of medicine, Division of Gastroenterology and Hepatology, Oregon Health & Science University, Portland, told GI & Hepatology News.
The study was published in the October issue of The American Journal of Gastroenterology.
Using Gastroenterology Quality Improvement Consortium Registry data, Crockett and colleagues analyzed more than 1.8 million colonoscopies performed by 4601 endoscopists between 2019 and 2022 across 702 sites. All colonoscopies involved removal of polyps < 1 cm; lesions of this size are commonly found in screening colonoscopies, and detection is crucial to early cancer prevention.
The researchers found striking variation in polypectomy technique. Guideline-based cold snare polypectomy (CSP) was used in only 58% of cases (and as a single device in only 51%), whereas cold forceps polypectomy (CFP) accounted for 35% and hot snare polypectomy (HSP) for 11%.
The fact that CSP was used in fewer than 60% of cases represents “an important quality gap,” the authors wrote, adding that the fact that more than 10% of colonoscopies used HSP suggests that “some patients harboring low-risk lesions may be exposed to excess risk related to these practice variations.”
And while recommendations around the use of CFP are more nuanced (based largely on forceps type and polyp size), the “high frequency of CFP also suggests nonadherence to best practices,” they noted.
Gastroenterologists More Apt to Follow Guidance
Polypectomy technique varied by polyp type. CFP was more common in cases where only hyperplastic polyps were removed compared with cases with tubular adenomas (45% vs 30%, respectively). CSP use was highest in cases where only sessile serrated lesions were removed (66%) compared with cases with only tubular adenomas (61%) or hyperplastic polyps (37%).
There was also considerable variation by provider specialty.
Gastroenterologists (compared with non-GI specialists) used HSP less (4% vs 8%) and CSP more (40% vs 34%). Colonoscopies performed with GI fellows were more likely to use CFP (31% vs 21%) and less likely to use HSP (1% vs 5%) compared with colonoscopies without fellows.
“It was somewhat reassuring that colonoscopies performed by gastroenterologists were more likely to adhere to guideline recommendations, which suggests that dedicated endoscopy training is likely an important factor driving high-quality colonoscopy,” Crockett told GI & Hepatology News.
“Unexpectedly,” polypectomy technique also differed dramatically by geographic region, he said. CFP was used more than twice as often in the Northeast (31%) as in the Midwest (14%), whereas CSP was used more frequently in the Midwest (52%) than in the Northeast (32%).
“We suspect that much of the variation is related to differences in training, preferences, habits, and evolution of colonoscopy practice over time,” Crockett said. “More research is needed on the underlying drivers of this variation, and how differences in polypectomy technique impact both the safety and efficacy of colonoscopy to prevent colorectal cancer,” he said.
“As a specialty, we need to continue to work on disseminating guideline recommendations regarding colonoscopy quality, monitoring adherence to evidence-based practices, and working to address gaps in quality where they exist,” he added.
‘Concerning, Surprising, and Disappointing’
David Johnson, MD, professor of medicine and chief of gastroenterology at Eastern Virginia Medical School and Old Dominion University in Norfolk, called the results “concerning, surprising, and disappointing” and not consistent with the most current quality recommendations that advocate cold snare for most polyps less than 1 cm in size.
“Cold snare polypectomy has been shown not only to be more effective but also takes less time to perform, relative to cold biopsy,” said Johnson, who wasn’t involved in the study.
Johnson told GI & Hepatology News, “Inadequate lesion resection and variation in resection quality are major issues for colonoscopy quality. Those who perform colonoscopies need to be up-to-date with evidence-based quality standards — as well as held accountable if [there is] discordant practice — if we are to optimize the cancer prevention benefits of quality colonoscopy.”
Limitations of the current analysis include lack of extensive patient information and inability to further stratify polyps < 1 cm by size.
The study had no commercial funding. Crockett had no disclosures. Johnson disclosed serving as a director, officer, partner, employee, advisor, consultant, or trustee for ISOThrive.
A version of this article appeared on Medscape.com.