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Activated regulatory T-cells promote duodenal bacterial translocation into necrotic areas in severe acute pancreatitis

Abstract

Objective In acute pancreatitis (AP), bacterial translocation and subsequent infection of pancreatic necrosis are the main risk factors for severe disease and late death. Understanding how immunological host defence mechanisms fail to protect the intestinal barrier is of great importance in reducing the mortality risk of the disease. Here, we studied the role of the Treg/Th17 balance for maintaining the intestinal barrier function in a mouse model of severe AP. Design AP was induced by partial duct ligation in C57Bl/6 or DEREG mice, in which regulatory T-cells (Treg) were depleted by intraperitoneal injection of diphtheria toxin. By flow cytometry, functional suppression assays and transcriptional profiling we analysed Treg activation and characterised T-cells of the lamina propria as well as intraepithelial lymphocytes (IELs) regarding their activation and differentiation. Microbiota composition was examined in intestinal samples as well as in murine and human pancreatic necrosis by 16S rRNA gene sequencing. Results The prophylactic Treg-depletion enhanced the proinflammatory response in an experimental mouse model of AP but stabilised the intestinal immunological barrier function of Th17 cells and CD8+/γδTCR+ IELs. Treg depleted animals developed less bacterial translocation to the pancreas. Duodenal overgrowth of the facultative pathogenic taxa Escherichia/Shigella which associates with severe disease and infected necrosis was diminished in Treg depleted animals. Conclusion Tregs play a crucial role in the counterbalance against systemic inflammatory response syndrome. In AP, Treg-activation disturbs the duodenal barrier function and permits translocation of commensal bacteria into pancreatic necrosis. Targeting Tregs in AP may help to ameliorate the disease course.

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Activated regulatory T-cells promote duodenal bacterial translocation into necrotic areas in severe acute pancreatitis

Author: Glaubitz, Juliane,Wilden, Anika,Frost, Fabian,Ameling, Sabine,Homuth, Georg,Mazloum, Hala,Rühlemann, Malte Christoph,Bang, Corinna,Aghdassi, Ali A,Budde, Christoph,Pickartz, Tilmann,Franke, Andre,Bröker, Barbara M,Voelker, Uwe,Mayerle, Julia,Lerch, Marku
Year: 2023
DOI: 10.1136/gutjnl-2022-327448
Source: https://macau.uni-kiel.de/servlets/MCRFileNodeServlet/macau_derivate_00005588/1355.full.pdf
1355
Glaubi zJ, e al. Gu 2023;72:1355–1369. doi:10.1136/gu jnl-2022-327448
Panc eas
O iginal esea ch
Ac i a ed egula o y T- cells p omo e duodenal
bac e ial ansloca ion in o nec o ic a eas in se e e
acu epanc ea i is
Juliane Glaubi z,1 Anika Wilden,1 Fabian F os ,1 Sabine Ameling,2 Geo g Homu h,2
Hala Mazloum,1 Mal e Ch is oph Rühlemann ,3,4 Co inna Bang ,3
Ali A Aghdassi ,1 Ch is oph Budde,1 Tilmann Picka z,1 And e F anke ,3
Ba ba a M B öke ,5 Uwe Voelke ,2 Julia Maye le ,6 Ma kus M Le ch,1
F ank- Ul ich Weiss,1 Ma hias Sendle 1
To ci e: Glaubi zJ, WildenA,
F os F, e al. Gu
2023;72:1355–1369.
►Addi ional supplemen al
ma e ial is published online
only. To iew, please isi he
jou nal online (h p:// dx. doi. o g/
10. 1136/ gu jnl- 2022- 327448).
Fo numbe ed a ilia ions see
end o a icle.
Co espondence o
D Ma hias Sendle ,
Depa men o Medicine A,
Uni e si y Medicine G ei swald,
G ei swald 17475, Ge many;
ma hias. sendle @ uni-
g ei swald. de
F- UW and MS a e las au ho s.
Recei ed 25 Ma ch 2022
Accep ed 30 Decembe 2022
Published Online Fi s
11Janua y2023
© Au ho (s) (o hei
employe (s)) 2023. Re- use
pe mi ed unde CC BY- NC. No
comme cial e- use. See igh s
and pe missions. Published
by BMJ.
ABSTRACT
Objec i e In acu e panc ea i is (AP), bac e ial
ansloca ion and subsequen in ec ion o panc ea ic
nec osis a e he main isk ac o s o se e e disease and
la e dea h. Unde s anding how immunological hos
de ence mechanisms ail o p o ec he in es inal ba ie
is o g ea impo ance in educing he mo ali y isk o
he disease. He e, we s udied he ole o he T eg/Th17
balance o main aining he in es inal ba ie unc ion in
a mouse model o se e e AP.
Design AP was induced by pa ial duc liga ion in
C57Bl/6 o DEREG mice, in which egula o y T- cells (T eg)
we e deple ed by in ape i oneal injec ion o diph he ia
oxin. By low cy ome y, unc ional supp ession assays
and ansc ip ional p o iling we analysed T eg ac i a ion
and cha ac e ised T- cells o he lamina p op ia as well as
in aepi helial lymphocy es (IELs) ega ding hei ac i a ion
and di e en ia ion. Mic obio a composi ion was examined
in in es inal samples as well as in mu ine and human
panc ea ic nec osis by 16S RNA gene sequencing.
Resul s The p ophylac ic T eg-
deple ion enhanced he
p oin lamma o y esponse in an expe imen al mouse
model o AP bu s abilised he in es inal immunological
ba ie unc ion o Th17 cells and CD8+/γδTCR+ IELs. T eg
deple ed animals de eloped less bac e ial ansloca ion
o he panc eas. Duodenal o e g ow h o he acul a i e
pa hogenic axa Esche ichia/Shigella which associa es
wi h se e e disease and in ec ed nec osis was diminished
in T eg deple ed animals.
Conclusion T egs play a c ucial ole in he
coun e balance agains sys emic in lamma o y esponse
synd ome. In AP, T eg- ac i a ion dis u bs he duodenal
ba ie unc ion and pe mi s ansloca ion o commensal
bac e ia in o panc ea ic nec osis. Ta ge ing T egs in AP may
help o amelio a e he disease cou se.
Regula o y T cells could ep esen a he apeu ic
a ge o he p e en ion o in ec ed nec osis du ing
se e e acu e panc ea i is, which will imp o e he
disease cou se and ou come.
INTRODUCTION
Acu e panc ea i is (AP) is he mos common non-
malignan disease o he gas oin es inal (GI) ac
leading o hospi al admission wi h an inc easing
incidence o e he pas yea s in wes e n coun ies.1
Eigh y pe cen o panc ea i is cases ollow a sel -
limi ing cou se o disease wi hou complica ions o
long- ime hospi alisa ion. Abou 20% o pa ien s
de elop se e e AP (SAP), which is associa ed wi h
sys emic complica ions and inc eased mo bidi y
and mo ali y.2 In ec ed panc ea ic nec osis, which
is belie ed o a ise om ansloca ion o commensal
gu bac e ia in o he panc eas,3 is ega ded o d i e
pe sis en o gan ailu e and subsequen mo ali y.2
Ini ially bac e ia need o o e come he in es inal
ba ie and e ade he immune sys em o cause
in ec ed nec osis. Especially he T eg/Th17- balance
is c ucial o main aining he in es inal ba ie unc-
ion and egula ing issue homoeos asis.4
WHAT IS ALREADY KNOWN ON THIS TOPIC
⇒In ec ed nec osis is a se e e complica ion
du ing acu e panc ea i is (AP) and is associa ed
wi h a signi ican mo ali y.
WHAT THIS STUDY ADDS
⇒In an animal model, he expe imen al induc ion
o AP associa es wi h signi ican changes o he
in es inal mic obio a composi ion and a ma ked
inc ease o acul a i e pa hogenic bac e ia. The
same bac e ial axa a e iden i ied in nec o ic
issue samples o panc ea i is pa ien s.
⇒Du ing AP, ac i a ed egula o y T cells supp ess
he sys emic immune esponse and impai he
immunological in es inal ba ie unc ion.
⇒The deple ion o T egs du ing AP educed he
bac e ial ansloca ion o acul a i e pa hogenic
s ains in o he in lamed panc eas.
HOW THIS STUDY MIGHT AFFECT RESEARCH,
PRACTICE OR POLICY
⇒Regula o y T cells could ep esen a he apeu ic
a ge o he p e en ion o in ec ed nec osis
du ing se e e AP which will imp o e he
disease cou se and ou come.
1356 Glaubi zJ, e al. Gu 2023;72:1355–1369. doi:10.1136/gu jnl-2022-327448
Panc eas
Panc ea i is is a p ima ily s e ile in lamma ion o igina ing om
p ema u e in acellula p o ease ac i a ion. Ac i a ed zymogens
igge acina cell dea h5 and ac i a e he immune egula ing
ansc ip ion ac o NFκB.6 This in lamma o y p ocess ec ui s
mac ophages and neu ophils o he si e o in lamma ion which
u he inc eases he local damage.7–10 Mac ophages ep e-
sen he majo i y o esiden panc ea ic immune cells and hei
ac i a ion by damage- associa ed molecula pa e ns (DAMPs)
ini ia es a sys emic immune- esponse,8 11–14 including he ac i-
a ion o he adap i e immune sys em h ough he elease o
cy okines.12 Du ing an episode o AP esiden lympha ic T- cells
ini ia e a supp essi e and an i- in lamma o y esponse media ed
by an inc ease in FOXP3+/CD25+ egula o y T- cells (T eg) and
GATA3+ Th2- cells.12 15 This pa allel ini ia ion o a sys emic
in lamma o y esponse synd ome (SIRS) and a compensa o y
an i- in lamma o y esponse synd ome (CARS) is also known
om sepsis o c i ical auma.16 17
Sys emic immunosupp ession (CARS), in pa icula media ed
by T egs, can p omo e seconda y in ec ions18 and hus agg a a e
disease se e i y o cause non- panc ea ic complica ions. To da e,
li le is known abou he ela ionship be ween he gu mic o-
biome and he cou se o AP.19 He e, we in es iga ed in an animal
model o AP how T eg- media ed immunosupp ession a ec s he
gu mic obiome composi ion and he ansloca ion o bac e ia
in o he in lamed panc eas.
RESULTS
AP is associa ed wi h changes o he in es inal mic obio a
composi ion
AP was induced by pa ial duc liga ion in C57Bl/6- J mice.
Duodenal aspi a es and aecal samples om dis al colon and
caecum we e collec ed om AP mice and un ea ed con ol
animals. 16S RNA gene sequencing e ealed mic obio a
di e ences be ween con ol and AP mice ( igu e 1A). P incipal
coo dina e analysis (PCoA) o all GI- ac samples con i med
mic obio a changes, wi h he mos p ominen changes seen
in duodenal aspi a es ( igu e 1B, online supplemen al igu e
S1A,B). A signi ican ly educed Shannon- di e si y and amplicon
sequence a ian (ASV) ichness was obse ed in he duodenal
aspi a es o AP animals. Smalle changes o he mic obio a
composi ion we e obse ed in caecal bu no in dis al colonic
samples ( igu e 1C,D). Analysis o he mos abundan axonomic
uni s iden i ied an inc ease o acul a i e pa hogenic bac e ia like
Esche ichia/Shigella, En e obac e iaceae di e sa, En e ococcus o
S aphylococcus. Especially in duodenal samples all hese axa
we e signi ican ly en iched du ing AP. In colon and caecum
samples, we could also obse e an inc ease o hese acul a-
i e pa hogenic bac e ia, bu only Esche ichia/Shigella showed
a signi ican inc ease in all pa s o he GI- ac ( igu e 1E–G).
Thei high abundance in he duodenal sec ion sugges s bac e ial
o e g ow h (online supplemen al igu e S1C). In con as , he
abundance o bene icial commensal bac e ia such as Lachnospi -
aceae was dec eased, and his e ec was again mos p onounced
in he duodenum ( igu e 1E–G). To e i y he esul s om he
model o AP using pa ial panc ea ic duc liga ion we in es iga ed
he mic obiome changes in duodenum and colon samples in a
second panc ea i is model. To analyse compa able ime poin s
we induced panc ea i is ia 8- hou ly in ape i oneal (i.p.) injec-
ions o Cae ulein (50 µg/kg/bodyweigh ) o e 3 days. Again, we
saw signi ican changes in he in es inal mic obiome composi-
ion wi h he s onges e ec s in he duodenum (online supple-
men al igu e S2A–C). The disease se e i y in his model was
Figu e 1 Acu e panc ea i is (AP) is associa ed wi h changes o he in es inal mic obio a composi ion. (A)Faecal samples om colon, caecum and
duodenum we e collec ed om C57Bl/6 mice wi h AP (n=24) and om un ea ed con ol animals Con (n=10). Isola ed DNA was analysed by 16S
RNA gene sequencing. The mic obio a composi ion and AP- associa ed changes o he axonomic uni s wi h he highes abundance a e illus a ed
by a s acked ba g aph. (B)P incipal coo dina e analysis illus a es he changes o gu mic obiome be ween un ea ed con ols and AP mice. (C,
D)Shannon- Di e si y Index (C)and ichness o obse ed species (D)demons a e signi ican impac o AP on he duodenal mic obiome composi ion.
(E–G)The ba g aph illus a es changes o he mos abundan axa in colonic (E),caecal (F)and duodenal samples (G)o AP ( ed) and con ol mice
(g ey). Facul a i e pa hogenic we e ma ked in ed, bene icial commensal bac e ia we e ma ked in g een. S a is ical signi icance was de e mined by
unpai ed S uden ’s - es and K uskal- Wallis es ollowed by a Dunn’s mul iple compa isons es o analyse di e en ially abundan axa in colon,
caecum and duodenum samples. Signi icance le els o p<0.05 a e ma ked by an as e isk.
1357
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Panc eas
signi ican ly lowe compa ed wi h he model induced by pa ial
panc ea ic duc liga ion (online supplemen al igu e S2D,E) and
we obse ed less p onounced changes o he in es inal mic obio a
composi ion (online supplemen al igu e S2A–C) and nea ly no
changes o he sys emic immune esponse (online supplemen al
igu e S2F–H).
In es inal mic obio a changes co ela e wi h he se e i y o
AP and he sys emic immune esponse
In he nex s ep, we in es iga ed how a he duodenal mic o-
biome changes a e in luenced by disease se e i y and h ough
he sys emic immune esponse by analysing splenic lymphocy es.
Unexpec edly LY6G+/LY6Clow/CD11b+- cells in spleen o AP
mice inc eased signi ican ly du ing AP bu he concomi an
dec ease o se um amylase as ma ke o panc ea ic damage
sugges ed an in e se co ela ion o disease se e i y ( igu e 2A).
Splenic LY6G+/LY6Clow/CD11b+- cells showed he same in e se
co ela ion wi h se um lipase ac i i y, his ological damage and
he se um cy okine le el o IL- 6 and TNFα (online supplemen al
igu e S3A–C). Fu he mo e, we de ec ed a posi i e co ela ion
o splenic LY6G+/LY6Clow/CD11b+- cells wi h he spleen weigh ,
and a nega i e co ela ion wi h he numbe o splenic CD25+/
FOXP3+ T egs which a e signi ican ly ele a ed du ing panc ea i is
(online supplemen al igu e S3D,E). Ele a ed apop osis in spleen
Figu e 2 In es inal mic obio a changes co ela e wi h he se e i y o AP and he sys emic immune esponse. (A)Do plo illus a es nega i e
co ela ion o LY6G+/LY6Clow/CD11b+- cells o he ac i i y o se um amylase o mice wi h AP (n=50), signi icance o co ela ion was es ed by
Spea man’s ank co ela ion- coe icien . (B)Disease se e i y in animals was classi ied acco ding o he pe cen age o LY6G+/LY6Clow/CD11b+- cells
in spleen (n=5/g oup). (C)Box plo s illus a e he duodenal mic obiome species ichness and Shannon- di e si y acco ding o mode a e and se e e
panc ea i is. (D)P incipal coo dina e analysis illus a es signi ican di e ences o duodenal mic obiome be ween hese g oups (pe mu a ional
mul i a ia e analysis o a iance; con ol s se e e: p=0.007, R2=59.4%, con ol s mode a e: p=0.015, R2=24.5% and mode a e s se e e: p=0.007,
R2=48.4%). (E)Hea - map illus a es 16S RNA gene sequencing esul s o he duodenal mic obiome analysis, acul a i e pa hogenic we e ma ked
in ed, bene icial commensal bac e ia we e ma ked in g een. (F)H&E- s aining o panc ea ic issue o heal hy and AP mice. (G)Colony o ming uni s
(CFU) we e coun ed om nec o ic issue homogena es and exceeded he cu - o le el o 1 CFU/mg issue weigh in 5 o 21 (23.8%) animals. (I)F om
in ec ed (n=5) and non- in ec ed (n=6) g oups, we analysed in spleen he pe cen age o LY6G+/LY6Clow/CD11b+- cells and (H) he pe cen age o
FOXP3+/CD25+/CD4+- cells. S a is ical e alua ion was done by unpai ed S uden ’s - es o independen samples and signi icance le els o p<0.05 a e
ma ked by an as e isk. AP, acu e panc ea i is.
1358 Glaubi zJ, e al. Gu 2023;72:1355–1369. doi:10.1136/gu jnl-2022-327448
Panc eas
could be esponsible o he loss o LY6G+/LY6Clow/CD11b+-
cells (online supplemen al igu e S3F). Based on hese indings,
we dicho omised he se o animals in a splenic LY6G+/LY6Clow/
CD11b+ high (mode a e) o low cell (se e e) coho and in es-
iga ed se e i y dependen changes o he duodenal mic obio a
composi ion ( igu e 2B). 16S RNA gene sequencing analysis
con i med a se e i y- dependen loss o ichness and di e si y
( igu e 2C). PCoA o duodenal aspi a es om mode a e and SAP
showed se e i y- dependen signi ican changes o he mic o-
bial composi ion ( igu e 2D). A de ailed analysis o he mos
equen duodenal mic obio a axa is illus a ed in he hea map
( igu e 2E and online supplemen al able 1). Facul a i e pa ho-
genic bac e ial clades like Esche ichia/Shigella, En e ococcus o
S aphylococcus we e again de ec ed wi h inc eased abundance
(online supplemen al igu e S4A).
In ec ed nec osis is a li e- h ea ening complica ion o AP
and ega ded o o igina e om ansloca ion o commensal
gu bac e ia. In ou mouse model o AP we examined, bac e-
ial in ec ion o he liga ed nec o ic pa o he panc eas by
colony g ow h assays o he issue homogena e on aga pla es
( igu e 2F–G). In 5 o 21 animals, we de ec ed a signi ican bac e-
ial load in panc ea ic nec osis wi h mo e han 1 colony- o ming
uni (CFU)/mg panc eas, which is compa able o in ec ion a es
seen in pa ien s ma ched o se e i y.2 A nega i e co ela ion
was de ec ed o he a e o in ec ion o panc ea ic nec osis and
numbe o splenic LY6G+/LY6Clow/CD11b+- cells ( igu e 2I and
online supplemen al igu e S4B). To es a unc ional ela ion-
ship be ween LY6G+/LY6Clow/CD11b+- cells and he in ec ion
o panc ea ic nec osis we deple ed LY6G+- cells by an i- LY6G
an ibody ea men be o e induc ion o panc ea i is. T ea men
wi h an i- LY6G abolished LY6G+/LY6Clow/CD11b+- cells (online
supplemen al igu e S4A–D) and did no a ec bac e ial ans-
loca ion in o he nec osis (S.4E). Ou inding sugges ed ha
educ ion o LY6G+/LY6Clow/CD11b+- cells in spleen can se e
as ma ke o disc imina e be ween mode a e and SAP in mice,
bu appa en ly has no unc ional impac .
Since he deple ion o LY6G+/LY6Clow/CD11b+- cells did no
a ec he adap i e immune cells (online supplemen al igu e S4F)
we in es iga ed in u he expe imen s he cells o he adap i e
immune esponse he spleen. Labelling o he IL- 2 ecep o -α-
chain (CD25) on he su ace o CD4+ T- cells (online supple-
men al igu e S5A) e ealed a signi ican ly s onge inc ease in
he numbe o ac i a ed CD25+ T- cells in hose animals wi h
an in ec ed panc ea ic nec osis, indica ed by a bac e ial load o
mo e han 1 CFU/mg panc ea ic issue. CD69, a second ac i-
a ion ma ke o CD4+ T- cells, showed he same associa ion
(online supplemen al igu e S5B). We nex in es iga ed T- cell
di e en ia ion by labelling o he ansc ip ion ac o s TBET,
GATA3 and FOXP3. Whe eas Th1- cell di e en ia ion ansc ip-
ion ac o TBET was no a ec ed by panc ea i is (online supple-
men al igu e S5C), GATA3+ Th2- cell numbe s we e ound
ele a ed in he spleen, independen o bac e ial in ec ion (online
supplemen al igu e S5D). In e es ingly, he numbe o FOXP3+/
CD25+ T egs was signi ican ly inc eased in animals su e ing om
panc ea i is and was highes in hose wi h in ec ed nec osis
( igu e 2H). Fu he mo e, we de ec ed a di ec co ela ion
be ween T eg a es wi h he bac e ial load (online supplemen al
igu e S5E).
Imbalance o he Th17/T eg a io in duodenal mucosa du ing
AP
To colonise panc ea ic nec osis commensal bac e ia need o o e -
come he in es inal ba ie . Duodenum his ology o AP mice did
no show ob ious di e ences ( igu e 3A). Immuno luo escen
labelling o F4/80 o CD68 demons a ed a signi ican educ ion
o mac ophages wi hin he lamina p op ia, also sIgA p oducing
plasma cells we e signi ican ly educed ( igu e 3B,C). The
numbe o T- cells was also a ec ed by AP, CD3+ T- cells wi hin
he lamina p op ia as well as CD8α+ in aepi helial lymphocy es
(IELs) we e signi ican ly educed ( igu e 3D,E). Addi ionally,
we analysed global mRNA- p o iles o mouse duodenal issues
(AP s con ol) using A yme ix GeneChip- a ays. Analysis
o he gene a ed ansc ip ome da a by QIAGEN’s Ingenui y-
Pa hway- Analysis (IPA) so wa e iden i ied AP- speci ic di e en-
ial gene exp ession in he T- cell- esponse, B- cell- esponse and
o he immune sys em- ela ed pa hways ( igu e 3F). T ansc ip
le els o genes encoding T- cell su ace ma ke s CD3, CD8α,
CD4 and CD28 we e signi ican ly educed, while SOCS3
(supp esso o cy okine signalling 3) speci ic mRNA was signi i-
can ly mo e abundan ( igu e 3G). B- cell- esponse ma ke s
like CD79A, TNFS13/p oli e a ion- inducing ligand APRIL,
TNFSF13B/B- cell ac i a ing ac o BAFF, o JCHAIN (pa o
Immunglobulin A) exhibi ed signi ican ly lowe ansc ip le els
in AP mice ( igu e 3G). In con as o an appa en ly a enu-
a ed immune esponse, he mRNA abundance o an i- mic obial
de ence pep ides such as DEFA1, REG3A, REG3G, DEFA23, o
DEFA21 was signi ican ly highe in he duodenum o AP mice
( igu e 3G). The exp ession o genes encoding s uc u al p o ein
componen s o he in es inal ba ie like igh junc ions, desmo-
somes o adhe ence junc ions we e only in some cases a ec ed
by AP (online supplemen al igu e S6A). We could obse e a
signi ican down egula ion o mRNAs encoding o Claudin15
(Cldn15), he Myosin ligh chain kinase (Mylk), cadhe in ela ed
amily membe 2 (Cdh 2) o Pannexin 1 (Panx1), whe eas o he
mRNAs showed a signi ican up egula ion a e onse o disease
such as Dsp, encoding o Desmoplakin, Cdh5 encoding o
he p o ein Cadhe in 5 o he mRNAs encoding o mucins 2,
3 and 3a (Muc2, Muc3 and Muc3a). C yp - cell p oli e a ion,
ma ked by KI67, was no a ec ed by AP (online supplemen al
igu e S6B). Mos s uc u al p o eins we e una ec ed by AP
like E- Cadhe in (online supplemen al igu e S6C). On he o he
hand, AP exhibi ed signi ican e ec s also on se e al pa hways o
he immune homoeos asis (cy okines, ansmemb ane- ecep o s
and ansc ip ional- egula o s) in he duodenal sys em (online
supplemen al igu e S6D–F).
To e alua e he e ec o disease se e i y on he in es inal
immune esponse, we isola ed and analysed lymphocy es o
he lamina p op ia and duodenal IELs by low cy ome y
wi h espec o disease se e i y ( igu e 3H–L). The pu i y o
bo h cell ypes was con i med de ec ing he CD8α/CD4 a io
(S.7A- B). We obse ed a se e i y- dependen dec ease o CD4+
T cells in he lamina p op ia (online supplemen al igu e
S7C). Wi hin his popula ion o CD4+ T- cells we measu ed an
inc ease o CD25+/FOXP3+ T egs du ing panc ea i is, wi h he
highes numbe s obse ed in SAP ( igu e 3H). The same esul
was ob ained o he popula ion o IELs, bu a a signi ican ly
lowe a io ( igu e 3I). Wi hin he duodenum we obse ed a
se e i y- dependen inc ease in he numbe o CD25+/FOXP3+
T egs ( igu e 3I,J). Fu he mo e, e ec o T- cell (Te ) numbe s
we e signi ican ly ele a ed du ing panc ea i is, he induc ion
o CD25+/RORγ + (Th17) IELs and CD25+/TBET+ (Th1) was
no di e en be ween mode a e o SAP. The a io o CD25+/
RORγ + inc eased o nea ly 10%, whe eas CD25+/TBET+ did
no ise abo e 1% o o al IELs ( igu e 3K,L). Analysis o GFP-
exp essing T egs in DEREG- mice (DEple ion o REGula o y
T- cells)20 e ealed a e induc ion o AP a signi ican edis-
ibu ion o GFP+/CD3+ T- cells wi hin he lamina p op ia,
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Panc eas
con i ming he cy ome y analysis ( igu e 3M). No ably he Te /
T eg- a io was signi ican ly lowe in animals su e ing om SAP
( igu e 3N). In summa y, hese esul s sugges ha AP causes
gene al immunosupp ession in he in es inal mucosa and
p onounced changes o he in es inal mic obio a composi ion.
Immune supp essi e unc ion o T egs du ing AP
To illumina e he ole o T egs, we analysed hei panc ea i is-
associa ed supp essi e capaci y. AP was induced by pa ial duc
liga ion in DEREG- mice exp essing a gene encoding a GFP-
diph he ia oxin (DT) ecep o usion p o ein unde he con ol
o a Foxp3- p omo e .20 GFP low cy ome ic analysis con i med
inc eased T eg numbe s a e induc ion o AP ( igu e 4A). The
same inc ease we could obse e in T- cells isola ed om he
duodenum ( igu e 4B). Using a luo escence- ac i a ed cell so e ,
GFP- posi i e T egs we e isola ed om he spleen o DEREG- mice
a e AP- induc ion and o con ol animals. We co- incuba ed
Figu e 3 Imbalance o he Th17/T eg a io in duodenal mucosa du ing AP. (A–E)His ological examina ion o he duodenum illus a es changes
o he in es inal mucosa in C57Bl/6 mice a e induc ion o AP. (A–C)In con as o only sligh changes in H&E- s aining we de ec ed di e ences in
immuno luo escen labelling o F4/80, CD68 as ma ke o mac ophages and sIgA as ma ke o plasma cells (B),all cells we e signi ican ly dec eased
in AP mice (C).(D)CD3 as T- cell ma ke and CD8α as ma ke o IELs we e labelled in small in es ine. (E)Ba g aphs illus a e signi ican changes o
T- cells and IELs in duodenum. (F)The ba g aph shows he -log10(pBH) alues o o e ep esen ed pa hways om an IPA analysis which was based on
di e en ially exp essed ansc ip ome da a o duodenal issue om AP and con ol mice. Hea map illus a es he z- sco e which indica es ac i a ion
(posi i e z- sco e, ed) o inhibi ion (nega i e z- sco e, blue) o his pa hway. (G)Hea - map illus a es old change di e ences o up egula ed ( ed) and
down egula ed (blue) genes in duodenal issue o AP mice compa ed wi h un ea ed con ols. (H)Lymphocy es isola ed om lamina p op ia as well
as om he epi helial laye we e analysed by low cy ome y. In CD4+ T- cells o he lamina p op ia he inc eased le els o CD25 and FOXP3 co ela ed
wi h disease se e i y. (I–J)The numbe s o CD4+/FOXP3+/CD25+- T egs (I)and CD4+/CD25+- T- cells (J) om IELs we e also inc eased in a se e i y-
dependen manne . (K, L)Th17- cells ma ked by RORγ +/CD25+ (K)and Th1- cells ma ked by TBET+/CD25+ (L)did no show a se e i y dependen
inc ease. (M)GFP- p oducing T egs in he duodenum o DEREG- mice we e de ec ed by an i- GFP and an i- CD3 labelling and showed a signi ican
inc ease a e onse o AP. (N)AP induced a shi o he Te /T eg a io. T egs showed a clea inc ease be ween mode a e and se e e AP in con as o Te
cells (Th1, Th2 and Th17). S a is ically signi ican di e ences we e es ed by unpai ed S uden ’s - es o independen samples and signi icance le els
o p<0.05 a e ma ked by an as e isk. AP, acu e panc ea i is.

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he T egs a a ios o 1:8, 1:4, 1:2 and 1:1 wi h naï e CM- Dil-
labelled CD3/CD28 ac i a ed T- cells in he p esence o IL- 2.
Dilu ion o CM- Dil luo escence by cell di ision was used o
measu e he supp essi e ac i i ies o T egs on Te - cell p oli e a ion
and showed a signi ican ly s onge supp ession by T egs om AP
animals ( igu e 4C). In addi ion, we analysed he ansc ip ome
o he isola ed T egs using A yme ix GeneChips. Exp ession
o Il10 and Tg bi we e inc eased, whe eas he mRNA le els o
Tn and S a 1 we e dec eased ( igu e 4D). Pa hway analyses o
he ansc ip ion da a using IPA- so wa e indica ed AP- associ-
a ed down egula ion o cell cycle egula ion and o he gene al
immune esponse pa hways in T egs (online supplemen al igu e
S8A). Ups eam egula o s included he cy okines IFNγ, IL- 10,
he ansc ip ion ac o s STAT3, FOXP3 and STAT6, and he
ansmemb ane ecep o s IL10RA, CD28 and CTLA4 (online
supplemen al igu e S8B–D).
We u he analysed AP- induced al e a ions in he global
mRNA p o ile o isola ed T egs om spleen and om duodenal
samples. In bo h subse s he ‘PD- 1, PD- L1 cance immuno-
he apy pa hway’ in ol ed in T eg- media ed immunosupp es-
sion was signi ican ly induced. Analysis o disease- ela ed and
bio unc ion- ela ed pa hways e ealed nega i e ac i a ion sco es
o many immune pa hways. Inna e and adap i e immune cells
seem equally a ec ed and lymphocy e ac i a ion was signi i-
can ly inhibi ed (online supplemen al igu e S9A–D).
Deple ion o T egs s abilises he homoeos asis o CD4+
T cells in he lamina p op ia as well as o CD8α+ IELs in he
duodenum
To e i y he immunosupp essi e e ec o T egs du ing AP we
deple ed T egs in DEREG- mice by i.p. injec ion o DT be o e he
induc ion o panc ea i is. The deple ion o T egs in adul mice
does no esul in au oimmune disease.21 By low cy ome y
( igu e 5A) and immuno luo escence de ec ion o GFP+ cells in
lymph nodes ( igu e 5B) we con i med a signi ican educ ion
o GFP+/CD25+ T egs in DT- ea ed animals, whe eas phospha e-
bu e ed saline (PBS)- ea ed con ol mice showed he ypical
AP- induced inc ease o T egs ( igu e 5C). The Te popula ions in
spleen, GATA3+/CD4+ Th2- cells and TBET+/CD4+ Th1- cells
we e signi ican ly inc eased compa ed wi h con ol animals
(online supplemen al igu e S10A). The popula ion o splenic
LY6G+/LY6Clow/CD11b+- cells, which in e sely co ela e wi h
he disease se e i y we e signi ican ly ele a ed in DT- ea ed
mice, whe eas myelope oxidase ac i i y in lung issue, a ma ke
o lung inju y, was compa able o PBS- ea ed con ols (online
supplemen al igu e S10B). We nex in es iga ed i he T eg deple-
ion a ec s duodenal CD4+ T- cells and CD8α+ IELs popula ions.
Immuno luo escence labelling o CD3+ T- cells and CD8α+ IELs
showed, ha ollowing deple ion o T egs he numbe s o CD3+
cells and CD8α+ IELs we e signi ican ly highe in DT- ea ed
animals compa ed wi h PBS- ea ed mice ( igu e 5D,E). Subse-
quen ly, we isola ed leucocy es om he duodenum o DT- ea ed
DEREG- mice a e induc ion o AP. PBS- ea ed animals we e
used as con ols. In DT- ea ed animals GFP+/CD25+ CD4+
T egs we e absen om he lamina p op ia ( igu e 5F). Exam-
ina ion o CD4+Te cells wi hin he lamina p op ia showed an
inc ease o RORγ +/CD25+ Th17- cells ( igu e 5G), whe eas he
numbe o TBET+/CD25+ Th1- cells was no changed a e T eg
deple ion ( igu e 5H). In e es ingly, we iden i ied a popula ion
o CD4hi cells wi hin he popula ion o IELs which is inc eased
in DT- ea ed animals ( igu e 5I). A de ailed cha ac e isa ion o
his CD4hi popula ion iden i ied mainly GFP+/CD4hi T egs and
RORγ +/CD4hi Th17- cells. Whe eas RORγ +/CD4hi Th17- cells
pe sis ed in DT- ea ed animals, T egs we e comple ely abolished
( igu e 5J,K). We u he analysed he popula ion o CD8α+ IELs,
which accoun o he majo i y o IELs. While immuno luo es-
cence labelling o CD8ɑ+ IELs and o CD3+ T- cells o he lamina
p op ia showed a signi ican educ ion in numbe s ( igu e 5D,E),
hei a io was no a ec ed by DT- ea men ( igu e 5L). Su ace
ma ke s allow o so IELs in o wo di e en popula ions: (A)
Figu e 4 Immune supp essi e unc ion o T egs du ing AP. AP was induced by pa ial duc liga ion in DEREG- and C57Bl/6 mice. (A)The numbe o
splenic GFP p oducing T egs was inc eased in he AP g oup (n=5) bu no in con ol o sham ope a ed mice (n=3). (B)The same inc ease o FOXP3+/
CD25+/CD4+ T egs was obse ed in he small in es ine. (n=5). (C)Supp ession assays showed ha T egs om AP mice ( ed line) ha e an inc eased
supp essi e capaci y on Te cell p oli e a ion. (D)Hea map illus a es old changes o gene ansc ip ion in T egs om AP mice (n=4) compa ed wi h
un ea ed con ols (n=4). S a is ically signi ican di e ences we e es ed by unpai ed S uden ’s - es o independen samples and signi icance le els
o p<0.05 a e ma ked by an as e isk, co ec ed o mul iple es ing (bon e oni- co ec ion). AP, acu e panc ea i is.
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induced- IELs posi i e o CD4+/CD8α+ and TCRαβ+ (T- cell
ecep o ), and (B) na u al- IELs which a e speci ic o CD8α+/
TCRγδ+ o CD8αβ-/TCRαβ+.22 Analysis o TCRβ and TCRγδ
on he su ace o CD8α+ IELs in DEREG- mice e ealed ha
he popula ion o induced IELs (CD8α+/TCRβ+) was inc eased
in AP, while he numbe o na u al IELs (CD8α+/TCRγδ+)
was signi ican ly dec eased. This TCRαβ+/TCRγδ+ shi was
less p onounced in T eg- deple ed mice ( igu e 5M). Finally, we
in es iga ed he p esence o he ansc ip ion ac o s TBET and
RORγ wi hin he CD8α+ IELs. No di e ences in he numbe
o TBET syn hesising IELs we e obse ed in he absence o T egs,
whe eas RORγ p oducing IELs we e signi ican ly inc eased
Figu e 5 Deple ion o T egs s abilises he homoeos asis o CD4+ T cells in he lamina p op ia as well as o CD8α+ IELs in he duodenum. AP
panc ea i is was induced in DEREG mice by pa ial duc liga ion, T egs we e deple ed by diph he ia oxin (DT) (n=11), con ols ecei e PBS (n=7).
(A)The e iciency o T eg deple ion wi h DT was e i ied by low cy ome y analysis o splenocy es. (B)Immuno luo escence de ec ion o GFP- p oducing
T egs was pe o med in lymph nodes o DT- ea ed and PBS- ea ed mice. (C)Ba g aphs show he a ios o CD25+ T- cells and GFP+/CD25+ T egs
analysed by low cy ome y o splenocy es. (D, E)Immuno luo escen labelling o CD3 and CD8α showed a signi ican pe sis ence o he T- cell and
IEL popula ion in he absence o T egs in DT- ea ed DEREG- mice compa ed wi h he PBS- ea ed g oup, (E).(F–N)Lymphocy es o he lamina p op ia
and he epi helial laye we e isola ed om duodenum and analysed by low cy ome y. (F)Following T eg- deple ion, no GFP+/CD25+ T egs we e de ec ed
wi hin he lamina p op ia. (G, H)Ba g aph show he numbe s o RORγ +/CD25+ Th17- cells (G)and TBET+/CD25+ Th1- cells (H).(I)The ba g aph
shows a highe a io o CD4hi exp essing IELs in DT- ea ed mice. (J, K)In he CD4hi IELs we obse ed a shi om GFP+ T egs (J) o RORγ + Th17- cells
(K).(L)The a io o CD8α+ IELs was no a ec ed by T eg- deple ion. (M)Do plo and ba g aphs illus a e he a io changes o TCRγδ+ IELs and TCRβ+
a e DT- ea men . (N)Wi hin he popula ion o CD8α+ IELs we measu ed an inc ease in RORγ p oducing cells whe eas TBET was no a ec ed.
S a is ically signi ican di e ences we e es ed by unpai ed s uden ’s - es o independen samples and signi icance le els o p<0.05 a e ma ked by
an as e isk. AP, acu e panc ea i is; IELs, in aepi helial lymphocy es; PBS, phospha e- bu e ed saline.
1362 Glaubi zJ, e al. Gu 2023;72:1355–1369. doi:10.1136/gu jnl-2022-327448
Panc eas
( igu e 5N). In summa y, he deple ion o T egs p e en ed he
panc ea i is- induced educ ion in T- cells in he lamina p op ia
and o CD8α+ IELs. Flow cy ome y da a showed a signi ican
inc ease o RORγ + Th17- cells, as well as a sus ained popula-
ion o CD8α+/TCRγδ+ na u al- IELs in DT- ea ed mice a e
he onse o AP.
Deple ion o T egs a enua es mic obial dysbiosis du ing
panc ea i is and p e en s bac e ial ansloca ion in o
panc ea ic nec osis
T eg- deple ion esul ed in inc eased Te numbe s hus we anal-
ysed whe he his inc ease also a ec ed mic obial composi ion in
AP. We pe o med 16S RNA gene sequencing based on isola ed
DNA om duodenal aspi a es o DEREG- mice. AP induced a
p onounced educ ion o bac e ial axa wi hin he duodenal
aspi a es, compa able o wha we obse ed in C57Bl/6 mice. In
con as o PBS- ea ed DEREG- con ols, mice ha had ecei ed
DT be o e induc ion o AP e ained a mo e a ied mic obial
composi ion, indica ed by a signi ican ly highe ASV ich-
ness and di e en composi ion shown by PCoA ( igu e 6A–C,
online supplemen al able 2). O e g ow h o acul a i e bac e-
ial pa hogens like Esche ichia/Shigella du ing AP was signi i-
can ly educed in he T eg deple ed g oup (S.10C). Quan i a i e
e e se ansc ip ion- quan i a i e PCR (RT- qPCR) con i med
he esul s om 16S RNA gene sequencing, he abundance o
acul a i e pa hogens like Esche ichia coli and En e ococcus
aecium is signi ican ly inc eased in mice wi h AP, bu o a mino
ex end in he DT- ea ed mice. Bene icial s ains like Lachno-
spi aceae o Lac obacillus emain unchanged (online supple-
men al igu e S10D). We analysed duodenal issue samples o
hese mice by RT- qPCR analysis and con i med he loss o T egs
by a DT- ea men - dependen dec ease in GFP ansc ip le els.
Du ing AP, we obse ed signi ican ly highe ansc ip le els o
he genes encoding IL- 15, IFNγ, TNFα and IL- 17F in DT- ea ed
mice. In e es ingly, ansc ip s o IL- 17A, IL- 22 o IL- 10 did
no di e be ween PBS- ea ed o DT- ea ed DEREG- mice
( igu e 6D). In T eg- deple ed AP mice, he mRNA amoun s o
he bac e ial de ence genes Tn s 13, Tn s 13b, Jchain and De a5
we e signi ican ly ele a ed. On he o he hand, he ansc ip
abundances o De c - s1 and Reg3g encoding an imic obial
pep ides we e no signi ican ly inc eased, while hose o he
genes encoding he bac e ioly ic enzymes Lysozyme 1 and 2,
which a e no mally sec e ed by Pane h cells, we e signi ican ly
highe ( igu e 6E). The exp ession o genes encoding he phys-
ical ba ie p o eins Occludin and Claudin- 1 was signi ican ly
inc eased in DT- ea ed mice whe eas changes in o he ba ie
p o eins like E- Cadhe in, Claudin- 5, ZO- 1 o Mucin- 2 did no
each a signi icance le el in DT- ea ed mice (online supple-
men al igu e S10E). Impo an ly, immuno luo escen labelling
o sIgA demons a ed ha in T eg- deple ed animals he popula-
ion o sIgA p oducing cells wi hin he lamina p op ia emained
cons an in panc ea i is ( igu e 6F).
Finally, we analysed whe he T eg- deple ion imp o es he
s abili y o he in es inal ba ie . We pe o med 16S RNA gene
sequencing in panc ea ic issue DNA o AP mice o de ec any
bac e ial aces. A cu - o o 5000 clean eads was exceeded in
8/25 (32%) o PBS- ea ed mice, indica ing in ec ed panc ea ic
nec osis. In con as , only 1/14 (7.14%) DT- ea ed mice eached
he cu - o le el (online supplemen al igu e S10F). S a is ical
analysis by Mann- Whi ney es con i med a signi ican ly lowe
bac e ial con amina ion o nec o ic issue in T eg-
deple ed mice.
Facul a i e pa hogens like Esche ichia/Shigella, En e obac e-
iaceae di e sa, S aphylococcus o En e ococcus ep esen ed
one o he 15 h mos abundan axa wi hin he nec o ic a eas
( igu e 6G, online supplemen al igu e S11A,B). A compa -
ison be ween panc ea ic samples and gu samples iden i ied
ASVs, which we e obse ed wi h inc eased abundance bo h in
duodenal samples (Esche ichia/Shigella, En e ococcus and Ci o-
bac e ) as well as in nec o ic a eas o he panc eas (online supple-
men al igu e S11C–E). In a compa a i e analysis we obse ed
ha he e y same bac e ial axa ha appea o mul iply in he
duodenal aspi a es om AP- animals we e isola ed om mu ine
panc ea ic nec osis ( igu e 6H). Quan i a i e RT- qPCR e ealed
signi ican ly highe numbe s o 16S RNA gene copies (shown as
lowe dC alue) in he panc eas o PBS- ea ed mice compa ed
wi h DT- ea ed mice wi h AP ( igu e 6I). O al adminis a ion o
an an ibio ic cock ail con aining 10 mg/mL ampicillin, 10 mg/mL
neomycin, 5 mg/mL ancomycin and 10 mg/mL me onidazole,
was pe o med e e y 12 hou s o e he expe imen al pe iod23
and p e en ed bac e ial ansloca ion in o he panc eas compa-
able o he deple ion o T egs by DT ( igu e 6I). 16S RNA gene
sequencing o duodenal samples showed ha an ibio ic ea men
p e en ed bac e ial o e g ow h in he duodenum o acul a i e
pa hogenic bac e ia such as Esche ichia/Shigella, En e ococcus,
S aphylococcus, En e obac e iaceae o Klebsiella, whe eas bene-
icial axa like Lac obacillus emained (online supplemen al
igu e S12A–C). We analysed in DT- ea ed animals whe he he
deple ion o T egs o an an ibio ic he apy amelio a ed he se e i y
o panc ea i is. Enzyma ic ac i i ies o common se e i y ma ke s
such as se um amylase and se um lipase we e signi ican ly lowe
in DT- ea ed and an ibio ic- ea ed animals ( igu e 6J). In
H&E- s ained panc ea ic sec ions less o gan damage was seen in
he T eg deple ed mice as well as in an ibio ic- ea ed mice. His o-
logical sco ing con i med signi ican ly less damage and educed
panc ea ic nec osis in DT- ea ed and an ibio ic- ea ed mice
( igu e 6K, online supplemen al igu e S12D). In conclusion,
he esul s sugges ha he amelio a ing e ec o T eg- deple ion
on disease se e i y is mainly due o he educ ion o bac e ial
ansloca ion. Deple ion o T egs in combina ion wi h an ibio ic
ea men showed no addi ional bene i .
Bac e ial in ec ion o human panc ea ic nec osis
The bac e ial colonisa ion o human panc ea ic nec osis samples
was analysed by 16S RNA gene sequencing. H&E- s aining o
hese samples showed no emaining in ac acina issue a chi-
ec u e (online supplemen al igu e S13A,B). Fo 58 indi idual
pa ien s (online supplemen al igu e S13C), samples ASVs
we e in e ed om PCR- ampli ied 16S RNA gene sequences.
Samples wi h >5.000 clean eads (53/58) o ep esen a i e ASV
sequences we e subsequen ly analysed ( igu e 7A). Fi micu es
was ound o be he mos dominan phylum, ep esen ing mo e
han 50% o he o al ela i e abundance, mainly consis ing o
he gene a En e ococcus, S ep ococcus and S aphylococcus.
The amily o En e obac e iaceae (phylum: P o eobac e ia) also
showed a high abundance wi h Esche ichia/Shigella as he mos
equen axa (online supplemen al igu e S13D), he same axa
we obse ed in mu ine nec osis. O he phyla like Bac e oide es,
Fusobac e ia o Ac inobac e ia we e ound wi h conside ably
lowe abundance. Some pa ien s unde wen mul iple subse-
quen nec osec omy p ocedu es and he analysis o ollow- up
samples showed ha he mic obiome in hese nec o ic samples
was a he s able o e pe iods o se e al weeks (online supple-
men al igu e S14A). In ec ion o panc ea ic nec osis by En e o-
coccus showed a signi ican co ela ion wi h he leng h o
hospi alisa ion ( igu e 7B). None o he o he 15 equen axa
(online supplemen al igu e S13D) o acul a i e pa hogens o
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he commensal gu bac e ia showed his kind o co ela ion
(online supplemen al igu e S14B). Subg oup analyses ega ding
AP e sus acu e episode o CP showed di e ences, bu he high
a iance in he mic obiome composi ion o panc ea ic nec osis
and he ela i e low numbe o pa ien s did no allow o d aw
i m conclusions (online supplemen al igu e S14C). Addi ional
me agenomic sequencing o eigh nec osis samples ( igu e 7C)
iden i ied he in ec ing bac e ial species En e ococcus aecalis,
En e ococcus aecium, Esche ichia coli, Bac e oides spp and
Ci obac e spp, hese axa a e equen ly ound in he gu .
Figu e 6 Deple ion o T egs a enua es mic obial dysbiosis du ing panc ea i is and p e en s bac e ial ansloca ion in o panc ea ic nec oses. (A)Hea -
map illus a es he majo mic obial axa in he duodenum o DEREG ea ed wi h PBS (n=8) o DT (n=8) a e induc ion o AP. Animals wi hou AP
e e ed as heal hy con ols (0d). Facul a i e pa hogenic we e ma ked in ed, bene icial commensal bac e ia we e ma ked in g een. (B)Box plo s
illus a e Shannon- Di e si y Index and species ichness in DT- o PBS- ea ed DEREG- mice. (C)A p incipal coo dina e analysis illus a es signi ican
di e ences o he duodenal mic obiome be ween hese g oups (pe mu a ional mul i a ia e analysis o a iance; con ol s se e e: p<0.001,
R2=18.2%). (D, E)Box plo s show RT- qPCR analysis o duodenal ansc ip ional changes a e deple ion o T egs. (F)Immuno luo escen labelling o
sIgA p oducing cells in he duodenal mucosa om con ol and AP animals showed signi ican ly dec eased numbe s o sIgA p oducing cells in AP
mice which ecei ed PBS. (G)S aked- ba g aphs illus a es bac e ial axa which could be iden i ied in all samples wi h mo e han 5.000 clean eads
om panc ea ic nec osis in DEREG AP- mice (8 PBS ea ed s 1 DT ea ed DEREG- mice). (H)The same bac e ial axa ha appea o expand in he
duodenum o AP- mice a e ound in mu ine panc ea ic nec osis samples. The s acked ba g aphs show he mean o all mice. (I)We analysed con ol
(con) and duc - liga ed DEREG mice wi h AP (PBS and DT) by 16S RNA gene RT- qPCR analysis o isola ed DNA om panc ea ic issue. Dec eased C
alues indica e bac e ial in ec ion in he panc eas o mice wi h AP wi h a signi ican g ea e ex en in he PBS- ea ed g oup compa ed wi h T eg
deple ed mice. An ibio ic ea men (+AB) signi ican ly educed he copy numbe o bac e ial 16S RNA gene in he panc eas and he e o e p e en ed
bac e ial ansloca ion du ing AP. (J, K)To e alua e how T egs and mic obiome composi ion a ec he disease se e i y DEREG mice we e ea ed a e
AP induc ion wi h an ibio ics (AB), ei he in p esence (+PBS) o absence (+DT) o T egs. (J)Disease se e i y was e alua ed by analysis o se um amylase
and lipase. (K)Panc ea ic his ology was analysed by H&E- s aining o issue sec ions, his ology sco e was e alua ed by quan i ica ion o oedema,
nec osis and leucocy e in il a ion. The hea map illus a es he mean esul o all g oups. S a is ically signi ican di e ences we e es ed by unpai ed
S uden ’s - es o independen samples. Fo mo e han wo g oups, s a is ical signi icance was de e mined by ANOVA one way analysis o a iance
ollowed by Bon e oni co ec ion o mul iple es ing, signi icance le els o p<0.05 a e ma ked by an as e isk. ANOVA, analysis o a iance; DT,
diph he ia oxin; RT- qPCR, e e se ansc ip ion- quan i a i e PCR; PBS, phospha e- bu e ed saline.