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乳酸促进小鼠胚胎干细胞向体外 XEN 细胞分化。

Lactate Enhances Mouse ES Cell Differentiation Toward XEN Cells In Vitro.

机构信息

Department of Biology, Western University, London, ON, Canada.

Collaborative Specialization in Developmental Biology, Western University, London, ON, Canada.

出版信息

Stem Cells. 2022 Mar 31;40(3):239-259. doi: 10.1093/stmcls/sxab022.

Abstract

Metabolism plays a crucial role for cell survival and function; however, recent evidence has implicated it in regulating embryonic development. In the embryo, the inner cell mass undergoes orchestrated cellular divisions resulting in the formation of pluripotent epiblast stem cells and primitive endoderm cells. However, both lineages can be captured in vitro as embryonic stem (ES) cells and extraembryonic endoderm (XEN) cells. Concomitantly, changes in the metabolic profile occurs during development, and are well documented in the embryonic lineages. However, a comprehensive multi-omic analysis of these features in XEN cells remains lacking. We observed that mouse XEN cells exhibited high sensitivity to glycolytic inhibition in addition to maintaining elevated intra- and extracellular lactate levels in vitro. Extraembryonic endoderm cells maintain high lactate levels by increased LDHA activity, and re-routing pyruvate away from the mitochondria resulting in reduced mitochondrial activity due to disruptions in electron transport chain stoichiometry. Importantly, exogenous lactate supplementation or promoting intracellular lactate accumulation enhances XEN differentiation in vitro. These results highlight how lactate contributes to XEN differentiation in vitro and may serve to enhance reprogramming efficiency of cells used for regenerative medicine.

摘要

代谢对于细胞存活和功能至关重要;然而,最近的证据表明它在调节胚胎发育中起作用。在胚胎中,内细胞团经历协调的细胞分裂,导致多能胚外干细胞和原始内胚层细胞的形成。然而,这两个谱系都可以在体外捕获为胚胎干细胞(ES 细胞)和胚胎外内胚层(XEN)细胞。同时,代谢谱在发育过程中发生变化,在胚胎谱系中得到了很好的记录。然而,XEN 细胞中这些特征的综合多组学分析仍然缺乏。我们观察到,除了在体外维持高细胞内和细胞外乳酸水平外,小鼠 XEN 细胞对糖酵解抑制表现出高度敏感性。胚胎外内胚层细胞通过增加 LDHA 活性来维持高乳酸水平,并将丙酮酸重新路由远离线粒体,导致由于电子传递链化学计量的破坏而减少线粒体活性。重要的是,外源性乳酸补充或促进细胞内乳酸积累增强了 XEN 体外分化。这些结果强调了乳酸如何有助于 XEN 体外分化,并可能有助于提高用于再生医学的细胞的重编程效率。

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