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Thyroid hormone receptor alpha modulates fibrogenesis in hepatic stellate cells

肝星状细胞 内分泌学 甲状腺激素受体 内科学 生物 肝纤维化 基因敲除 受体 肝细胞学 伤口愈合 纤维化 移植 激素 医学 免疫学 细胞培养 遗传学 肝脏代谢
作者
Paul Manka,Jason D. Coombes,Svenja Sydor,Marzena Swiderska‐Syn,Jan Best,Karine Gauthier,Leo A. van Grunsven,Ye Htun Oo,Cindy Wang,Anna Mae Diehl,Georg Sebastian Hönes,Lars C. Moeller,Anja Figge,René J. Boosman,Klaas Nico Faber,Andrea Tannapfel,Oliver Goetze,Patricia Aspichueta,Christian M. Lange,Ali Canbay
出处
期刊:Liver International [Wiley]
卷期号:44 (1): 125-138 被引量:29
标识
DOI:10.1111/liv.15759
摘要

OBJECTIVE: Progressive hepatic fibrosis can be considered the final stage of chronic liver disease. Hepatic stellate cells (HSC) play a central role in liver fibrogenesis. Thyroid hormones (TH, e.g. thyroxine; T4 and triiodothyronine; T3) significantly affect development, growth, cell differentiation and metabolism through activation of TH receptor α and/or β (TRα/β). Here, we evaluated the influence of TH in hepatic fibrogenesis. DESIGN: Human liver tissue was obtained from explanted livers following transplantation. TRα-deficient (TRα-KO) and wild-type (WT) mice were fed a control or a profibrogenic methionine-choline deficient (MCD) diet. Liver tissue was assessed by qRT-PCR for fibrogenic gene expression. In vitro, HSC were treated with TGFβ in the presence or absence of T3. HSC with stable TRα knockdown and TRα deficient mouse embryonic fibroblasts (MEF) were used to determine receptor-specific function. Activation of HSC and MEF was assessed using the wound healing assay, Western blotting, and qRT-PCR. RESULTS: TRα and TRβ expression is downregulated in the liver during hepatic fibrogenesis in humans and mice. TRα represents the dominant isoform in HSC. In vitro, T3 blunted TGFβ-induced expression of fibrogenic genes in HSC and abrogated wound healing by modulating TGFβ signalling, which depended on TRα presence. In vivo, TRα-KO enhanced MCD diet-induced liver fibrogenesis. CONCLUSION: These observations indicate that TH action in non-parenchymal cells is highly relevant. The interaction of TRα with TH regulates the phenotype of HSC via the TGFβ signalling pathway. Thus, the TH-TR axis may be a valuable target for future therapy of liver fibrosis.
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