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全能性或多能性:重新思考干细胞的双能性。

Totipotency or plenipotency: rethinking stem cell bipotentiality.

作者信息

Wen Duancheng, Wang Jianlong

机构信息

Ronald O. Perelman and Claudia Cohen Center for Reproductive Medicine, Weill Cornell Medicine, New York, NY 10065, USA.

Department of Medicine, Columbia Center for Human Development and Stem Cell Therapies, Columbia Stem Cell Initiative, Herbert Irving Comprehensive Cancer Center, Columbia University Irving Medical Center, New York, NY 10032, USA.

出版信息

Curr Opin Genet Dev. 2025 Jun;92:102342. doi: 10.1016/j.gde.2025.102342. Epub 2025 Mar 19.

Abstract

The term 'totipotency' has often been misapplied in stem cell research to describe cells with embryonic and extraembryonic bipotentiality, despite a lack of evidence that they can generate an entire organism from a single cell. Additionally, no specific term currently distinguishes bipotential stem cells from pluripotent cells, which contribute poorly to extraembryonic tissues. This review examines the developmental continuum from totipotency to pluripotency in early embryos and revisits the previously proposed concept of plenipotency in preimplantation development. We evaluate emerging stem cell models that exhibit bipotentiality but have lost the ability to autonomously initiate and sustain the sequential fate decisions necessary to develop into a complete organism. Unlike totipotent embryonic cells, which retain the information required to initiate fate decisions at the correct timing and cell numbers, these stem cells have lost that capacity. This loss of critical developmental information distinguishes totipotency from plenipotency, with bipotential stem cells aligning more closely with the latter. By distinguishing plenipotency from totipotency and pluripotency, we aim to refine terminology, enhance our understanding of early embryonic development, and address ethical considerations in human research.

摘要

“全能性”一词在干细胞研究中常被错误地用于描述具有胚胎和胚外双能性的细胞,尽管缺乏证据表明它们能从单个细胞发育成完整的生物体。此外,目前没有特定术语来区分双能干细胞和多能干细胞,多能干细胞对胚外组织的贡献较差。本文综述了早期胚胎从全能性到多能性的发育连续过程,并重新审视了先前提出的着床前发育中的全潜能概念。我们评估了新兴的干细胞模型,这些模型表现出双能性,但已失去自主启动和维持发育成完整生物体所需的连续命运决定的能力。与全能胚胎细胞不同,全能胚胎细胞保留了在正确时间和细胞数量启动命运决定所需的信息,而这些干细胞已经失去了这种能力。关键发育信息的丧失将全能性与全潜能性区分开来,双能干细胞与后者更为接近。通过区分全潜能性与全能性和多能性,我们旨在完善术语,增进对早期胚胎发育的理解,并解决人类研究中的伦理问题。

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