Literature DB >> 24060854

A novel mouse model of depletion of stellate cells clarifies their role in ischemia/reperfusion- and endotoxin-induced acute liver injury.

Rachel K Stewart1, Anil Dangi1,2, Chao Huang1, Noriko Murase1, Shoko Kimura1, Donna B Stolz3, Gregory C Wilson2, Alex B Lentsch2, Chandrashekhar R Gandhi1,2,4.   

Abstract

BACKGROUND & AIMS: Hepatic stellate cells (HSCs) that express glial fibrillary acidic protein (GFAP) are located between the sinusoidal endothelial cells and hepatocytes. HSCs are activated during liver injury and cause hepatic fibrosis by producing excessive extracellular matrix. HSCs also produce many growth factors, chemokines and cytokines, and thus may play an important role in acute liver injury. However, this function has not been clarified due to unavailability of a model, in which HSCs are depleted from the normal liver.
METHODS: We treated mice expressing HSV-thymidine kinase under the GFAP promoter (GFAP-Tg) with 3 consecutive (3 days apart) CCl4 (0.16 μl/g; ip) injections to stimulate HSCs to enter the cell cycle and proliferate. This was followed by 10-day ganciclovir (40 μg/g/day; ip) treatment, which is expected to eliminate actively proliferating HSCs. Mice were then subjected to hepatic ischemia/reperfusion (I/R) or endotoxin treatment.
RESULTS: CCl4/ganciclovir treatment caused depletion of the majority of HSCs (about 64-72%), while the liver recovered from the initial CCl4-induced injury (confirmed by histology, serum ALT and neutrophil infiltration). The magnitude of hepatic injury due to I/R or endotoxemia (determined by histopathology and serum ALT) was lower in HSC-depleted mice. Their hepatic expression of TNF-α, neutrophil chemoattractant CXCL1 and endothelin-A receptor also was significantly lower than the control mice.
CONCLUSIONS: HSCs play an important role both in I/R- and endotoxin-induced acute hepatocyte injury, with TNF-α and endothelin-1 as important mediators of these effects. Published by Elsevier B.V.

Entities:  

Keywords:  ALT; Ab; Apoptosis; CCl(4); Depletion; ECM; ET-1; Endotoxemia; GCV; GFAP; H/E; HSC; HSV; Hepatic stellate cells; Hepatocytes; I/R; IL; IP; Injury; Ischemia/reperfusion; KCs; Kupffer cells; LPS; Lipopolysaccharide; Liver; NO; NOS; Necrosis; PBS; ROS; TK; TNF; Tg; WT; alanine aminotransferase; antibody; carbon tetrachloride; endothelin-1; extracellular matrix; ganciclovir; glial fibrillary acidic protein; hematoxylin and eosin; hepatic stellate cell; herpes simplex virus; interleukin; intraperitoneal; ischemia/reperfusion; lipopolysaccharide; nitric oxide; nitric oxide synthase; phosphate-buffered saline; qRT-PCR; quantitative real-time polymerase chain reaction; reactive oxygen species; thymidine kinase; transgenic; tumor necrosis factor; wild type

Mesh:

Substances:

Year:  2013        PMID: 24060854      PMCID: PMC4195246          DOI: 10.1016/j.jhep.2013.09.013

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


  55 in total

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9.  Inhibition of DNA synthesis in cultured hepatocytes by endotoxin-conditioned medium of activated stellate cells is transforming growth factor-beta and nitric oxide-independent.

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  41 in total

1.  CXC chemokine receptor-4 signaling limits hepatocyte proliferation after hepatic ischemia-reperfusion in mice.

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2.  Stellate Cells Orchestrate Concanavalin A-Induced Acute Liver Damage.

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Review 7.  Innate Immune Regulations and Liver Ischemia-Reperfusion Injury.

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Review 10.  Therapeutics administered during ex vivo liver machine perfusion: An overview.

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