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首页> 外文期刊>Hepatology: Official Journal of the American Association for the Study of Liver Diseases >Hepatocyte-Specific beta-Catenin Deletion During Severe Liver Injury Provokes Cholangiocytes to Differentiate Into Hepatocytes
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Hepatocyte-Specific beta-Catenin Deletion During Severe Liver Injury Provokes Cholangiocytes to Differentiate Into Hepatocytes

机译:在严重肝损伤期间肝细胞特异性β-连环蛋白缺失引起胆管细胞分化为肝细胞

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摘要

Liver regeneration after injury is normally mediated by proliferation of hepatocytes, although recent studies have suggested biliary epithelial cells (BECs) can differentiate into hepatocytes during severe liver injury when hepatocyte proliferation is impaired. We investigated the effect of hepatocyte-specific beta-catenin deletion in recovery from severe liver injury and BEC-to-hepatocyte differentiation. To induce liver injury, we administered choline-deficient, ethionine-supplemented (CDE) diet to three different mouse models, the first being mice with deletion of beta-catenin in both BECs and hepatocytes (Albumin-Cre; Ctnnb1(flox/flox) mice). In our second model, we performed hepatocyte lineage tracing by injecting Ctnnb1(flox/flox); Rosa-stop(flox/flox)-EYFP mice with the adeno-associated virus serotype 8 encoding Cre recombinase under the control of the thyroid binding globulin promoter, a virus that infects only hepatocytes. Finally, we performed BEC lineage tracing via Krt19-Cre(ERT); Rosa-stop(flox/flox)-tdTomato mice. To observe BEC-to-hepatocyte differentiation, mice were allowed to recover on normal diet following CDE diet-induced liver injury. Livers were collected from all mice and analyzed by quantitative real-time polymerase chain reaction, western blotting, immunohistochemistry, and immunofluorescence. We show that mice with lack of beta-catenin in hepatocytes placed on the CDE diet develop severe liver injury with impaired hepatocyte proliferation, creating a stimulus for BECs to differentiate into hepatocytes. In particular, we use both hepatocyte and BEC lineage tracing to show that BECs differentiate into hepatocytes, which go on to repopulate the liver during long-term recovery. Conclusion: beta-catenin is important for liver regeneration after CDE diet-induced liver injury, and BEC-derived hepatocytes can permanently incorporate into the liver parenchyma to mediate liver regeneration.
机译:损伤后肝脏再生通常是通过肝细胞的增殖介导的,尽管最近的研究表明胆道上皮细胞(BECS)可以在肝细胞增殖损害时在严重肝损伤期间分化为肝细胞。我们研究了肝细胞特异性β-连环蛋白缺失在严重肝损伤和肝细胞分化中恢复的影响。为了诱导肝损伤,我们将胆碱缺乏,乙硫氨酸补充(CDE)饮食给予三种不同的小鼠模型,首先是在BEC和肝细胞中缺失β-连环蛋白的小鼠(白蛋白-CRE; CTNNB1(FLOX / FLOX)老鼠)。在我们的第二种模型中,我们通过注射CTNNB1(FLOX / FLOX)进行肝细胞谱系追踪; ROSA-STOP(FLOX / FLOX)-EYFP小鼠用腺相关病毒血清型8编码CRE重组酶的控制,该甲状腺结合球蛋白启动子的控制,一种感染肝细胞的病毒。最后,我们通过KRT19-CRE(ert)进行了谱系追踪; Rosa-stop(Flox / Flox)-tdtomato小鼠。为了观察到肝细胞分化,允许小鼠在CDE饮食诱导的肝损伤后正常饮食中恢复。从所有小鼠中收集肝脏,并通​​过定量实时聚合酶链反应,Western印迹,免疫组化和免疫荧光分析。我们展示缺乏肝细胞缺乏β-catenin的小鼠在CDE饮食上发育严重的肝细胞损伤,肝细胞增殖受损,为BECS分化为肝细胞的刺激。特别是,我们使用肝细胞和血管谱系来表明BECS分化为肝细胞,继续在长期回收期间恢复肝脏。结论:β-Catenin对于CDE饮食诱导肝损伤后的肝再生是重要的,BEC衍生的肝细胞可以永久地掺入肝脏实质中以介导肝再生。

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