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Direct Reprogramming of Hepatic Myofibroblasts into Hepatocytes In Vivo Attenuates Liver Fibrosis

机译:肝成纤维细胞直接重编程为肝细胞体内可减轻肝纤维化。

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摘要

Direct induction of induced hepatocytes (iHeps) from fibroblasts holds potential as a strategy for regenerative medicine but until now has only been shown in culture settings. Here, wedescribe in vivo iHep formation using transcription factor induction and genetic fate tracing in mouse models of chronic liver disease. We show that ectopic expression of the transcription factors FOXA3, GATA4, HNF1A, and HNF4A from a polycistronic lentiviral vector converts mouse myofibroblasts into cells with a hepatocyte phenotype. In vivo expression of the same set of transcription factors from a p75 neurotrophin receptor peptide (p75NTRp)-tagged adenovirus enabled the generation of hepatocyte-like cells from myofibroblasts in fibrotic mouse livers and reduced liver fibrosis. We have therefore been able to convert pro-fibrogenic myofibroblasts in the liver into hepatocyte-like cells with positive functional benefits. This direct in vivo reprogramming approach may open new avenues for the treatment of chronic liver disease.
机译:从成纤维细胞直接诱导诱导的肝细胞(iHeps)具有作为再生医学策略的潜力,但直到现在,这种方法仅在培养环境中显示。在这里,我们描述在慢性肝病的小鼠模型中使用转录因子诱导和遗传缘分追踪的体内iHep形成。我们显示从多顺反子慢病毒载体的转录因子FOXA3,GATA4,HNF1A和HNF4A的异位表达将小鼠成肌纤维细胞转化为具有肝细胞表型的细胞。从带有p75神经营养蛋白受体肽(p75NTRp)标签的腺病毒体内表达同一组转录因子能够在纤维化小鼠肝脏中从成纤维细胞生成肝样细胞,并减少肝纤维化。因此,我们已经能够将肝脏中促纤维化的成纤维细胞转化为具有积极功能优势的类肝细胞。这种直接的体内重编程方法可以为慢性肝病的治疗开辟新的途径。

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