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模拟囊胚几何形状的底物使多能干细胞回复到起始状态。

Substrates mimicking the blastocyst geometry revert pluripotent stem cell to naivety.

机构信息

Institute of Active Polymers and Berlin-Brandenburg Center for Regenerative Therapies, Helmholtz-Zentrum Hereon, Teltow, Germany.

Institute of Chemistry, University of Potsdam, Potsdam, Germany.

出版信息

Nat Mater. 2024 Dec;23(12):1748-1758. doi: 10.1038/s41563-024-01971-4. Epub 2024 Aug 12.

Abstract

Naive pluripotent stem cells have the highest developmental potential but their in vivo existence in the blastocyst is transient. Here we report a blastocyst motif substrate for the in vitro reversion of mouse and human pluripotent stem cells to a naive state. The substrate features randomly varied microstructures, which we call motifs, mimicking the geometry of the blastocyst. Motifs representing mouse-blastocyst-scaled curvature ranging between 15 and 62 mm were the most efficient in promoting reversion to naivety, as determined by time-resolved correlative analysis. In these substrates, apical constriction enhances E-cadherin/RAC1 signalling and activates the mechanosensitive nuclear transducer YAP, promoting the histone modification of pluripotency genes. This results in enhanced levels of pluripotency transcription factor NANOG, which persist even after cells are removed from the substrate. Pluripotent stem cells cultured in blastocyst motif substrates display a higher development potential in generating embryoid bodies and teratomas. These findings shed light on naivety-promoting substrate design and their large-scale implementation.

摘要

原始多能干细胞具有最高的发育潜能,但它们在囊胚中的体内存在是短暂的。在这里,我们报告了一种囊胚基序底物,可用于体外将小鼠和人类多能干细胞逆转回原始状态。该底物具有随机变化的微观结构,我们称之为基序,模仿囊胚的几何形状。通过时间分辨相关分析,最有效的是代表小鼠囊胚尺度曲率的图案,范围在 15 到 62 毫米之间,可促进向原始状态的逆转。在这些基质中,顶端收缩增强了 E-钙粘蛋白/RAC1 信号,并激活了机械敏感的核转导蛋白 YAP,促进了多能性基因的组蛋白修饰。这导致多能性转录因子 NANOG 的水平升高,即使在细胞从基质中去除后,这种升高仍能持续存在。在囊胚图案基质中培养的多能干细胞在生成胚状体和畸胎瘤方面显示出更高的发育潜力。这些发现为促进原始状态的底物设计及其大规模实施提供了启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd62/11599042/8f0e9d496267/41563_2024_1971_Fig1_HTML.jpg

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