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小分子联合诱导肝祖细胞并抑制星状细胞可逆转慢性肝功能障碍。

The combined induction of liver progenitor cells and the suppression of stellate cells by small molecules reverts chronic hepatic dysfunction.

作者信息

Huang Wei-Jian, Zhou Xu, Fu Gong-Bo, Ding Min, Wu Hong-Ping, Zeng Min, Zhang Hong-Dan, Xu Ling-Yan, Gao Yi, Wang Hong-Yang, Yan He-Xin

机构信息

International Cooperation Laboratory on Signal Transduction, Eastern Hepatobiliary Surgery Hospital, Second Military Medical University, Shanghai, China.

Department of Hepatobiliary Surgery II, Guangdong Provincial Research Center for Artificial Organ and Tissue Engineering, Zhujiang Hospital, Southern Medical University.

出版信息

Theranostics. 2021 Mar 14;11(11):5539-5552. doi: 10.7150/thno.54457. eCollection 2021.

Abstract

We developed a cocktail of soluble molecules mimicking the milieu supporting liver regeneration that could convert mature hepatocytes to expandable liver progenitor-like cells . This study aimed to induce endogenous liver progenitor cells by the administration of the soluble molecules to provide an alternative approach for the resolution of liver fibrosis. cultured hepatocyte-derived liver progenitor-like cells (HepLPCs) were transplanted into CCL4-treated mice to investigate the therapeutic effect against liver fibrosis. Next, we used HGF in combination with a cocktail of small molecules (Y-27632, A-83-01, and CHIR99021 (HACY)) to induce endogenous CD24 liver progenitor cells and to inhibit the activation of hepatic stellate cells (HSCs) during CCL4-induced hepatic injury. RNA sequencing was performed to further clarify the features of HACY-induced CD24 cells compared with CCL4-induced CD24 cells and derived HepLPCs. Finally, we evaluated the expansion of HACY-induced CD24 cells in human hepatocyte-spheroids from fibrotic liver tissues. HepLPCs exhibited the capacity to alleviate liver fibrosis after transplantation into CCL4-treated mice. The administration of HACY not only induced the conversion of mature hepatocytes (MHs) to CD24 progenitor cells but prevented the activation of HSCs, thus leading to enhanced improvement of liver fibrosis in CCL4-treated mice. Compared to CD24 cells induced by CCL4 alone, HACY-induced CD24 cells retained an enhanced level of hepatic function and could promote the restoration of liver function that exhibited comparable gene expression profiles with HepLPCs. CD24 cells were also observed in human liver fibrotic tissues and were expanded in three-dimensional (3D) hepatic spheroids in the presence of HACY . Hepatocyte-derived liver progenitor-like cells are crucial for liver regeneration during chronic hepatic injuries. The administration of HACY, which allowed the induction of endogenous CD24 progenitor cells and the inactivation of HSCs, exerts beneficial effects in the treatment of liver fibrosis by re-establishing a balance favoring liver regeneration while preventing fibrotic responses.

摘要

我们研发了一种可溶性分子混合物,模拟支持肝脏再生的微环境,该混合物可将成熟肝细胞转化为可扩增的肝祖细胞样细胞。本研究旨在通过给予这些可溶性分子来诱导内源性肝祖细胞,从而为解决肝纤维化提供一种替代方法。将培养的肝细胞衍生的肝祖细胞样细胞(HepLPCs)移植到经四氯化碳处理的小鼠体内,以研究其对肝纤维化的治疗效果。接下来,我们将肝细胞生长因子(HGF)与小分子混合物(Y - 27632、A - 83 - 01和CHIR99021(HACY))联合使用,以诱导内源性CD24肝祖细胞,并在四氯化碳诱导的肝损伤过程中抑制肝星状细胞(HSCs)的激活。进行RNA测序以进一步阐明与四氯化碳诱导的CD24细胞和衍生的HepLPCs相比,HACY诱导的CD24细胞的特征。最后,我们评估了HACY诱导的CD24细胞在来自纤维化肝组织的人肝细胞球中的扩增情况。HepLPCs移植到经四氯化碳处理的小鼠体内后,表现出减轻肝纤维化的能力。给予HACY不仅能诱导成熟肝细胞(MHs)转化为CD24祖细胞,还能阻止HSCs的激活,从而使经四氯化碳处理的小鼠肝纤维化得到更明显的改善。与仅由四氯化碳诱导的CD24细胞相比,HACY诱导的CD24细胞保留了更高水平的肝功能,并且能够促进肝功能的恢复,其基因表达谱与HepLPCs相当。在人肝纤维化组织中也观察到了CD24细胞,并且在存在HACY的情况下,它们在三维(3D)肝球中得以扩增。肝细胞衍生的肝祖细胞样细胞在慢性肝损伤期间的肝脏再生中至关重要。给予HACY能够诱导内源性CD24祖细胞并使HSCs失活,通过重新建立有利于肝脏再生同时防止纤维化反应的平衡,在肝纤维化治疗中发挥有益作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb65/8039967/f17a38e5ad55/thnov11p5539g001.jpg

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