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Loss of TGF-beta dependent growth control during HSC transdifferentiation
Authors:Purps Oliver  Lahme Birgit  Gressner Axel M  Meindl-Beinker Nadja M  Dooley Steven
Institution:Institute of Clinical Chemistry and Pathobiochemistry, University Hospital, RWTH-Aachen, Germany.
Abstract:Liver injury induces activation of hepatic stellate cells (HSCs) comprising expression of receptors, proliferation, and extracellular matrix synthesis triggered by a network of cytokines provided by damaged hepatocytes, activated Kupffer cells and HSCs. While 6 days after bile duct ligation in rats TGF-beta inhibited DNA synthesis in HSCs, it was enhanced after 14 days, indicating a switch from suppression to DNA synthesis stimulation during fibrogenesis. To delineate mechanisms modulating TGF-beta function, we analyzed crosstalk with signaling pathways initiated by cytokines in damaged liver. Lipopolysaccharide and tumor necrosis factor-alpha enhanced proliferation inhibition of TGF-beta, whereas interleukin-6, oncostatin M, interleukin-1alpha, and interleukin-1beta did not. Hepatocyte growth factor (HGF) counteracted TGF-beta dependent inhibition of DNA synthesis in quiescent HSCs. Since expression of c-met is induced during activation of HSCs and HGF is overrepresented in damaged liver, crosstalk of HGF and TGF-beta contributes to loss of TGF-beta dependent inhibition of DNA synthesis in HSCs.
Keywords:BDL  bile duct ligation  ECM  extracellular matrix  HGF  hepatocyte growth factor  HSCs  hepatic stellate cells  Il  interleukin  LPS  lipopolysaccharide  MFBs  myofibroblasts  OSM  oncostatin M  PDGF  platelet-derived growth factor  TGF  transforming growth factor  TNF  tumor necrosis factor
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