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建立人类原始多能状态。

Establishing the human naïve pluripotent state.

作者信息

Manor Yair S, Massarwa Rada, Hanna Jacob H

机构信息

The Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 7610001, Israel.

The Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 7610001, Israel.

出版信息

Curr Opin Genet Dev. 2015 Oct;34:35-45. doi: 10.1016/j.gde.2015.07.005. Epub 2015 Aug 24.

Abstract

Pluripotency is first assembled within the inner-cell-mass of developing pre-implantation blastocysts, and is gradually reconfigured and dismantled during early post-implantation development, before overt differentiation into somatic lineages ensues. This transition from pre-implantation to post-implantation pluripotent states, respectively referred to as naïve and primed, is accompanied by dramatic changes in molecular and functional characteristics. Remarkably, pluripotent states can be artificially preserved in a self-renewing state in vitro by continuous supplementation of a variety of exogenous cytokines and small molecule inhibitors. Different exogenous factors endow the cells with distinct configurations of pluripotency that have direct influence on stem cell characteristics both in mice and humans. Here we overview pluripotent states captured from rodents and humans under different growth conditions, and provide a conceptual framework for classifying pluripotent cell states on the basis of a combination of multiple characteristics that a pluripotent cell can simultaneously retain. We further highlight the complexity and dynamic nature of these artificially isolated in vitro pluripotent states in humans.

摘要

多能性最初在发育中的植入前囊胚的内细胞团中形成,并在植入后早期发育过程中逐渐重新配置和解体,然后才会明显分化为体细胞谱系。从植入前到植入后多能状态的这种转变,分别称为原始态和启动态,伴随着分子和功能特征的显著变化。值得注意的是,通过持续补充多种外源性细胞因子和小分子抑制剂,可以在体外将多能状态人为地维持在自我更新状态。不同的外源性因素赋予细胞不同的多能性构型,这对小鼠和人类的干细胞特征都有直接影响。在这里,我们概述了在不同生长条件下从啮齿动物和人类中捕获的多能状态,并提供了一个概念框架,用于根据多能细胞可以同时保留的多种特征组合对多能细胞状态进行分类。我们进一步强调了人类中这些人工分离的体外多能状态的复杂性和动态性质。

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