Literature DB >> 23831119

Cell-specific PPARγ deficiency establishes anti-inflammatory and anti-fibrogenic properties for this nuclear receptor in non-parenchymal liver cells.

Eva Morán-Salvador1, Esther Titos, Bibiana Rius, Ana González-Périz, Verónica García-Alonso, Cristina López-Vicario, Rosa Miquel, Yaacov Barak, Vicente Arroyo, Joan Clària.   

Abstract

BACKGROUND & AIMS: PPARγ plays an essential role in the transcriptional regulation of genes involved in lipid and glucose metabolism, insulin sensitivity, and inflammation. We recently demonstrated that PPARγ plays a causative role in hepatocyte lipid deposition, contributing to the pathogenesis of hepatic steatosis. In this study, we investigated the role of PPARγ in the inflammatory and fibrogenic response of the liver.
METHODS: Heterozygous floxed/null Cre/LoxP mice with targeted deletion of PPARγ in either hepatocytes (Alb-Cre), macrophages (LysM-Cre) or hepatic stellate cells (HSCs) (aP2-Cre) were submitted to carbon tetrachloride (CCl4) liver injury. Further analyses were performed in precision-cut liver slices (PCLS) and primary cultures of hepatocytes, macrophages, and HSCs.
RESULTS: LysM-Cre mice displayed an exacerbated response to chronic CCl4 injury and showed higher necroinflammatory injury, lipid peroxidation, inflammatory infiltrate, cleaved-caspase-3 and caspase 3/7 activity, and COX-2, TNF-α, CXCL2, and IL-1β expression than Alb-Cre and control mice. The deleterious effects of PPARγ disruption in liver macrophages were confirmed in an acute model of CCl4 injury as well as in PCLS incubated with LPS. Moreover, LysM-Cre mice showed an aggravated fibrogenic response to CCl4, as revealed by more prominent Sirius Red and Masson's trichrome staining, elevated hydroxyproline content and induced α-SMA and TIMP-1 expression. Importantly, aP2-Cre mice with specific disruption of PPARγ in HSCs, as confirmed by immunocytochemical analysis of individual liver cells, also showed exacerbated liver damage and fibrogenic response to CCl4.
CONCLUSIONS: These data unveil anti-inflammatory and anti-fibrogenic roles for PPARγ in non-parenchymal liver cells.
Copyright © 2013 European Association for the Study of the Liver. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  4-HNE; 4-hydroxynonenal; ALT; AST; Alb-Cre; CCl(4); Fibrosis; HSCs; Hepatic stellate cells; Hepatocytes; IL; Inflammation; Kupffer cells; LDH; LPS; LysM-Cre; NAFLD; NF-κB; PCLS; PPARγ; TNF-α; TZD; aP2-Cre; adipocyte fatty acid-binding protein 4-Cre (HSC-specific PPARγ deficient mice); alanine aminotransferase; albumin-Cre (hepatocyte-specific PPARγ deficient mice); aspartate aminotransferase; carbon tetrachloride; hepatic stellate cells; interleukin; lactate dehydrogenase; lipopolysaccharide; lysozyme M-Cre (macrophage-specific PPARγ deficient mice); non-alcoholic fatty liver disease; nuclear factor-kB; peroxisome proliferator-activated receptor γ; precision-cut liver slices; thiazolidinediones; tumor necrosis factor α

Mesh:

Substances:

Year:  2013        PMID: 23831119     DOI: 10.1016/j.jhep.2013.06.023

Source DB:  PubMed          Journal:  J Hepatol        ISSN: 0168-8278            Impact factor:   25.083


  34 in total

1.  Glucocorticoids Have Opposing Effects on Liver Fibrosis in Hepatic Stellate and Immune Cells.

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Journal:  Mol Endocrinol       Date:  2016-06-29

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Authors:  Jasper Lodder; Timothé Denaës; Marie-Noële Chobert; JingHong Wan; Jamel El-Benna; Jean-Michel Pawlotsky; Sophie Lotersztajn; Fatima Teixeira-Clerc
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3.  Rosiglitazone Inhibits Activation of Hepatic Stellate Cells via Up-Regulating Micro-RNA-124-3p to Alleviate Hepatic Fibrosis.

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4.  Inhibition of soluble epoxide hydrolase attenuates hepatic fibrosis and endoplasmic reticulum stress induced by carbon tetrachloride in mice.

Authors:  Todd R Harris; Ahmed Bettaieb; Sean Kodani; Hua Dong; Richard Myers; Nipavan Chiamvimonvat; Fawaz G Haj; Bruce D Hammock
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Review 5.  Mechanisms of hepatic stellate cell activation.

Authors:  Takuma Tsuchida; Scott L Friedman
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2017-05-10       Impact factor: 46.802

6.  Regulation of peroxisome proliferator-activated receptor-gamma activity affects the hepatic stellate cell activation and the progression of NASH via TGF-β1/Smad signaling pathway.

Authors:  Xi-Xi Ni; Xiao-Yun Li; Qi Wang; Jing Hua
Journal:  J Physiol Biochem       Date:  2020-11-14       Impact factor: 4.158

7.  Inflammation is independent of steatosis in a murine model of steatohepatitis.

Authors:  Wei Wang; Ming-Jiang Xu; Yan Cai; Zhou Zhou; Haixia Cao; Partha Mukhopadhyay; Pal Pacher; Shusen Zheng; Frank J Gonzalez; Bin Gao
Journal:  Hepatology       Date:  2017-05-18       Impact factor: 17.425

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Authors:  Tobias Gutting; Christian A Weber; Philip Weidner; Frank Herweck; Sarah Henn; Teresa Friedrich; Shuiping Yin; Julia Kzhyshkowska; Timo Gaiser; Klaus-Peter Janssen; Wolfgang Reindl; Matthias P A Ebert; Elke Burgermeister
Journal:  Oncoimmunology       Date:  2018-02-01       Impact factor: 8.110

9.  PPARγ Deficiency Suppresses the Release of IL-1β and IL-1α in Macrophages via a Type 1 IFN-Dependent Mechanism.

Authors:  Kassandra J Weber; Madeline Sauer; Li He; Eric Tycksen; Gowri Kalugotla; Babak Razani; Joel D Schilling
Journal:  J Immunol       Date:  2018-08-24       Impact factor: 5.422

10.  Interspecies NASH disease activity whole-genome profiling identifies a fibrogenic role of PPARα-regulated dermatopontin.

Authors:  Philippe Lefebvre; Fanny Lalloyer; Eric Baugé; Michal Pawlak; Céline Gheeraert; Hélène Dehondt; Jonathan Vanhoutte; Eloise Woitrain; Nathalie Hennuyer; Claire Mazuy; Marie Bobowski-Gérard; Francesco Paolo Zummo; Bruno Derudas; Ann Driessen; Guy Hubens; Luisa Vonghia; Wilhelmus J Kwanten; Peter Michielsen; Thomas Vanwolleghem; Jérôme Eeckhoute; An Verrijken; Luc Van Gaal; Sven Francque; Bart Staels
Journal:  JCI Insight       Date:  2017-07-06
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