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通过抑制上皮-间质转化增强诱导多能干细胞向肝分化

Enhancement of hepatic differentiation from induced pluripotent stem cells by suppressing epithelial-mesenchymal transition.

作者信息

Li Na, Wei Rui, Yuan Yangyang, Deng Mingdan, Hu Yang, Cheng Chi-Wa, Yang Jiayin, Ho Wai-In, Au Ka-Wing, Tse Yiu-Lam, Li Fei, Wu Xinyi, Lau Yee-Man, Liao Songyan, Ma Stephanie, Liu Pentao, Ng Kwong-Man, Esteban Miguel A, Tse Hung-Fat

机构信息

Department of Medicine, The Cardiology Division, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong SAR, China.

Hong Kong-Guangdong Stem Cell and Regenerative Medicine Research Centre, The University of Hong Kong and Guangzhou Institutes of Biomedicine and Health, Hong Kong SAR, China.

出版信息

Hepatol Commun. 2025 May 16;9(6). doi: 10.1097/HC9.0000000000000702. eCollection 2025 Jun 1.

Abstract

BACKGROUND

Induced pluripotent stem cells induced hepatocytes (iHeps) are widely used in modeling human liver diseases and as a potential cell source for replacement therapy. However, most iHeps are relatively immature and challenging to maintain for long-term in vitro culture.

METHODS

We optimized the differentiation protocol by addition of a combination of small molecules to inhibit epithelial-mesenchymal transition (EMT) in iHeps (iHeps EMTi), and further characterized their function both in vitro and in vivo analyses.

RESULTS

Inhibition of EMT extended the in vitro culture period of iHeps EMTi from day 24 to day 60. In vitro analysis revealed that, compared to control, iHeps EMTi exhibited significantly higher expression levels of hepatic functional markers and enhanced hepatocyte functions, including lipid accumulation, glycogen storage, albumin secretion, and urea acid metabolism. Moreover, the molecular profiles of iHeps EMTi are closer to those of primary human hepatocytes. In addition, the in vivo engraftment efficiency of iHeps EMTi in the chimeric mice model was also improved as compared to iHeps alone.

CONCLUSIONS

We established a robust protocol to generate human iHeps with improved function and capable of long-term in vitro culturing via the suppression of EMT. Moreover, those iHeps with EMT suppression have improved engraftment in human chimeric mice.

摘要

背景

诱导多能干细胞诱导的肝细胞(iHeps)被广泛用于人类肝脏疾病建模以及作为替代治疗的潜在细胞来源。然而,大多数iHeps相对不成熟,并且在体外长期培养具有挑战性。

方法

我们通过添加小分子组合来优化分化方案,以抑制iHeps中的上皮-间质转化(EMT)(iHeps EMTi),并在体外和体内分析中进一步表征其功能。

结果

抑制EMT将iHeps EMTi的体外培养期从第24天延长至第60天。体外分析显示,与对照相比,iHeps EMTi表现出明显更高的肝功能标志物表达水平,并增强了肝细胞功能,包括脂质积累、糖原储存、白蛋白分泌和尿酸代谢。此外,iHeps EMTi的分子谱更接近原代人肝细胞。此外,与单独的iHeps相比,iHeps EMTi在嵌合小鼠模型中的体内植入效率也有所提高。

结论

我们建立了一个强大的方案,通过抑制EMT来生成功能改善且能够在体外长期培养的人iHeps。此外,那些抑制EMT的iHeps在人嵌合小鼠中的植入效果得到改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23bd/12088630/1a99b67aece9/hc9-9-e0702-g001.jpg

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