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产生胰高血糖素的α细胞转录特性及向胰岛素生成的重编程。

Glucagon-producing α-cell transcriptional identity and reprogramming towards insulin production.

作者信息

Oropeza Daniel, Herrera Pedro Luis

机构信息

Department of Genetic Medicine and Development, Faculty of Medicine, University of Geneva, Geneva, Switzerland.

Department of Genetic Medicine and Development, Faculty of Medicine, University of Geneva, Geneva, Switzerland.

出版信息

Trends Cell Biol. 2024 Mar;34(3):180-197. doi: 10.1016/j.tcb.2023.07.004. Epub 2023 Aug 23.

Abstract

β-Cell replacement by in situ reprogramming of non-β-cells is a promising diabetes therapy. Following the observation that near-total β-cell ablation in adult mice triggers the reprogramming of pancreatic α-, δ-, and γ-cells into insulin (INS)-producing cells, recent studies are delving deep into the mechanisms controlling adult α-cell identity. Systematic analyses of the α-cell transcriptome and epigenome have started to pinpoint features that could be crucial for maintaining α-cell identity. Using different transgenic and chemical approaches, significant advances have been made in reprogramming α-cells in vivo into INS-secreting cells in mice. The recent reprogramming of human α-cells in vitro is an important step forward that must now be complemented with a comprehensive molecular dissection of the mechanisms controlling α-cell identity.

摘要

通过对非β细胞进行原位重编程来实现β细胞替代是一种很有前景的糖尿病治疗方法。在观察到成年小鼠中近乎完全的β细胞消融会触发胰腺α、δ和γ细胞重编程为产生胰岛素(INS)的细胞之后,最近的研究正在深入探究控制成年α细胞身份的机制。对α细胞转录组和表观基因组的系统分析已开始确定对于维持α细胞身份可能至关重要的特征。利用不同的转基因和化学方法,在将小鼠体内的α细胞重编程为分泌INS的细胞方面已取得了重大进展。最近在体外对人α细胞进行的重编程是向前迈出的重要一步,现在必须对控制α细胞身份的机制进行全面的分子剖析作为补充。

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