Penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways

Abstract The penicillinase-resistant antibiotics (PRAs), especially the highly prescribed flucloxacillin, caused frequent liver injury via mechanisms that remain largely non-elucidated. We first showed that flucloxacillin, independently of cytotoxicity, could exhibit cholestatic effects in human hep...

Full description

Bibliographic Details
Main Authors: Audrey Burban, Ahmad Sharanek, Romain Hüe, Marion Gay, Sylvain Routier, André Guillouzo, Christiane Guguen-Guillouzo
Format: Article
Language:English
Published: Nature Publishing Group 2017-05-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-01171-y
id doaj-b1289589be8c461f93dd1eb5e8e48493
record_format Article
spelling doaj-b1289589be8c461f93dd1eb5e8e484932020-12-08T02:29:29ZengNature Publishing GroupScientific Reports2045-23222017-05-017111710.1038/s41598-017-01171-yPenicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathwaysAudrey Burban0Ahmad Sharanek1Romain Hüe2Marion Gay3Sylvain Routier4André Guillouzo5Christiane Guguen-Guillouzo6INSERM U991, Liver Metabolisms and CancerINSERM U991, Liver Metabolisms and CancerINSERM U991, Liver Metabolisms and CancerICOA, University of Orleans, UMR CNRS 7311ICOA, University of Orleans, UMR CNRS 7311INSERM U991, Liver Metabolisms and CancerINSERM U991, Liver Metabolisms and CancerAbstract The penicillinase-resistant antibiotics (PRAs), especially the highly prescribed flucloxacillin, caused frequent liver injury via mechanisms that remain largely non-elucidated. We first showed that flucloxacillin, independently of cytotoxicity, could exhibit cholestatic effects in human hepatocytes in the absence of an immune reaction, that were typified by dilatation of bile canaliculi associated with impairment of the Rho-kinase signaling pathway and reduced bile acid efflux. Then, we analyzed the sequential molecular events involved in flucloxacillin-induced cholestasis. A crucial role of HSP27 by inhibiting Rho-kinase activity was demonstrated using siRNA and the specific inhibitor KRIBB3. HSP27 activation was dependent on the PKC/P38 pathway, and led downstream to activation of the PI3K/AKT pathway. Other PRAs induced similar cholestatic effects while non PRAs were ineffective. Our results demonstrate that PRAs can induce cholestatic features in human hepatocytes through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways and consequently support the conclusion that in clinic they can cause a non-immune-mediated cholestasis that is not restricted to patients possessing certain genetic determinants.https://doi.org/10.1038/s41598-017-01171-y
collection DOAJ
language English
format Article
sources DOAJ
author Audrey Burban
Ahmad Sharanek
Romain Hüe
Marion Gay
Sylvain Routier
André Guillouzo
Christiane Guguen-Guillouzo
spellingShingle Audrey Burban
Ahmad Sharanek
Romain Hüe
Marion Gay
Sylvain Routier
André Guillouzo
Christiane Guguen-Guillouzo
Penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways
Scientific Reports
author_facet Audrey Burban
Ahmad Sharanek
Romain Hüe
Marion Gay
Sylvain Routier
André Guillouzo
Christiane Guguen-Guillouzo
author_sort Audrey Burban
title Penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways
title_short Penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways
title_full Penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways
title_fullStr Penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways
title_full_unstemmed Penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways
title_sort penicillinase-resistant antibiotics induce non-immune-mediated cholestasis through hsp27 activation associated with pkc/p38 and pi3k/akt signaling pathways
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-05-01
description Abstract The penicillinase-resistant antibiotics (PRAs), especially the highly prescribed flucloxacillin, caused frequent liver injury via mechanisms that remain largely non-elucidated. We first showed that flucloxacillin, independently of cytotoxicity, could exhibit cholestatic effects in human hepatocytes in the absence of an immune reaction, that were typified by dilatation of bile canaliculi associated with impairment of the Rho-kinase signaling pathway and reduced bile acid efflux. Then, we analyzed the sequential molecular events involved in flucloxacillin-induced cholestasis. A crucial role of HSP27 by inhibiting Rho-kinase activity was demonstrated using siRNA and the specific inhibitor KRIBB3. HSP27 activation was dependent on the PKC/P38 pathway, and led downstream to activation of the PI3K/AKT pathway. Other PRAs induced similar cholestatic effects while non PRAs were ineffective. Our results demonstrate that PRAs can induce cholestatic features in human hepatocytes through HSP27 activation associated with PKC/P38 and PI3K/AKT signaling pathways and consequently support the conclusion that in clinic they can cause a non-immune-mediated cholestasis that is not restricted to patients possessing certain genetic determinants.
url https://doi.org/10.1038/s41598-017-01171-y
work_keys_str_mv AT audreyburban penicillinaseresistantantibioticsinducenonimmunemediatedcholestasisthroughhsp27activationassociatedwithpkcp38andpi3kaktsignalingpathways
AT ahmadsharanek penicillinaseresistantantibioticsinducenonimmunemediatedcholestasisthroughhsp27activationassociatedwithpkcp38andpi3kaktsignalingpathways
AT romainhue penicillinaseresistantantibioticsinducenonimmunemediatedcholestasisthroughhsp27activationassociatedwithpkcp38andpi3kaktsignalingpathways
AT mariongay penicillinaseresistantantibioticsinducenonimmunemediatedcholestasisthroughhsp27activationassociatedwithpkcp38andpi3kaktsignalingpathways
AT sylvainroutier penicillinaseresistantantibioticsinducenonimmunemediatedcholestasisthroughhsp27activationassociatedwithpkcp38andpi3kaktsignalingpathways
AT andreguillouzo penicillinaseresistantantibioticsinducenonimmunemediatedcholestasisthroughhsp27activationassociatedwithpkcp38andpi3kaktsignalingpathways
AT christianeguguenguillouzo penicillinaseresistantantibioticsinducenonimmunemediatedcholestasisthroughhsp27activationassociatedwithpkcp38andpi3kaktsignalingpathways
_version_ 1724393760449626112