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首页> 外文期刊>Advanced Science >A 3D Cell Culture Model Identifies Wnt/β‐Catenin Mediated Inhibition of p53 as a Critical Step during Human Hepatocyte Regeneration
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A 3D Cell Culture Model Identifies Wnt/β‐Catenin Mediated Inhibition of p53 as a Critical Step during Human Hepatocyte Regeneration

机译:3D细胞培养模型将Wnt /β-catenin介导的p53抑制抑制作为人肝细胞再生期间的关键步骤

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摘要

The liver is a highly regenerative organ. While mature hepatocytes under homeostatic conditions are largely quiescent, upon injury, they rapidly enter the cell cycle to recover the damaged tissue. In rodents, a variety of injury models have provided important insights into the molecular underpinnings that govern the proliferative activation of quiescent hepatocytes. However, little is known about the molecular mechanisms of human hepatocyte regeneration and experimental methods to expand primary human hepatocytes (PHH). Here, a 3D spheroid model of PHH is established to study hepatocyte regeneration and integrative time‐lapse multi‐omics analyses show that upon isolation from the native liver PHH acquire a regenerative phenotype, as seen in vivo upon partial hepatectomy. However, proliferation is limited. By analyzing global promoter motif activities, it is predicted that activation of Wnt/β‐catenin and inhibition of p53 signaling are critical factors required for human hepatocyte proliferation. Functional validations reveal that activation of Wnt signaling through external cues alone is sufficient to inhibit p53 and its proliferative senescence‐inducing target PAI1 (SERPINE1) and drive proliferation of 50% of all PHH. A scalable 3D culture model is established to study the molecular and cellular biology of human hepatocyte regeneration. By using this model, an essential role of Wnt/β‐catenin signaling during human hepatocyte regeneration is identified.
机译:肝脏是一个高度再生器官。虽然在稳重状态下成熟的肝细胞在损伤后大部分静静脉,但它们迅速进入细胞周期以回收受损的组织。在啮齿动物中,各种伤害模型已经为治理静态肝细胞增殖活化的分子支撑性提供了重要的见解。然而,关于人肝细胞再生的分子机制和实验方法众所周知的是扩张原发性人肝细胞(PHH)的实验方法。这里,建立了PHH的3D球体模型,以研究肝细胞再生和整合时间流逝多OMICS分析表明,在从天然肝脏PHH中分离,获得再生表型,如在部分肝切除术后的体内所见。然而,增殖是有限的。通过分析全球启动子局部活动,预测Wnt /β-catenin的激活和P53信号传导的抑制是人肝细胞增殖所需的关键因素。功能验证揭示了通过单独的外部提示激活WNT信号传导足以抑制P53及其增殖性衰老诱导靶PAI1(Serpine1),并驱动所有PH的50%的增殖。建立了可扩展的3D培养模型,以研究人肝细胞再生的分子和细胞生物学。通过使用该模型,鉴定了人肝细胞再生期间Wnt /β-catenin信号传导的基本作用。

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