XEN与干细胞维持的艺术:维持胚胎外内胚层干细胞(XEN)细胞系细胞命运和自我更新的分子机制。

4区 生物学 Q3 Medicine Advances in Anatomy Embryology and Cell Biology Pub Date : 2018-01-01 DOI:10.1007/978-3-319-63187-5_6
Amy Ralston
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引用次数: 2

摘要

胚胎外内胚层是哺乳动物发育过程中最早形成的细胞类型之一。这种胚胎外谱系在哺乳动物发育过程中发挥着多种重要作用,包括在胚胎发生过程中引导轴向模式和诱导第一批血细胞的形成。此外,最近的研究发现,在胚胎外内胚层细胞首次被指定的阶段,小鼠和人类胚胎在基因表达和形态方面都具有惊人的保守性。因此,小鼠胚胎是理解维持胚胎外内胚层细胞命运的途径的一个很好的模型。此外,自我更新的多能干细胞系,称为XEN细胞,已经从小鼠胚胎的胚胎外内胚层中获得。小鼠XEN细胞系为理解维持谱系潜力的基本机制提供了额外的工具,为确定胚胎外外胚层如何指定胎儿细胞类型提供了资源,并为建立人类同类细胞提供了范例。考虑到胚胎外内胚层功能的潜在保护,人类XEN细胞将提供相当大的进步。然而,XEN细胞系尚未成功地从人类胚胎中获得。鉴于人类XEN细胞系的潜在效用,本章重点回顾了已知的控制小鼠XEN干细胞特性的机制,以期促进建立人类XEN细胞系的新方法。
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XEN and the Art of Stem Cell Maintenance: Molecular Mechanisms Maintaining Cell Fate and Self-Renewal in Extraembryonic Endoderm Stem (XEN) Cell Lines.

The extraembryonic endoderm is one of the first cell types specified during mammalian development. This extraembryonic lineage is known to play multiple important roles throughout mammalian development, including guiding axial patterning and inducing formation of the first blood cells during embryogenesis. Moreover, recent studies have uncovered striking conservation between mouse and human embryos during the stages when extraembryonic endoderm cells are first specified, in terms of both gene expression and morphology. Therefore, mouse embryos serve as an excellent model for understanding the pathways that maintain extraembryonic endoderm cell fate. In addition, self-renewing multipotent stem cell lines, called XEN cells, have been derived from the extraembryonic endoderm of mouse embryos. Mouse XEN cell lines provide an additional tool for understanding the basic mechanisms that contribute to maintaining lineage potential, a resource for identifying how extraembryonic ectoderm specifies fetal cell types, and serve as a paradigm for efforts to establish human equivalents. Given the potential conservation of essential extraembryonic endoderm roles, human XEN cells would provide a considerable advance. However, XEN cell lines have not yet been successfully derived from human embryos. Given the potential utility of human XEN cell lines, this chapter focuses on reviewing the mechanisms known to govern the stem cell properties of mouse XEN, in hopes of facilitating new ways to establish human XEN cell lines.

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期刊介绍: "Advances in Anatomy, Embryology and Cell Biology" presents critical reviews on all topical fields of normal and experimental anatomy including cell biology. The multi-perspective presentation of morphological aspects of basic biological phenomen in the human constitutes the main focus of the series. The contributions re-evaluate the latest findings and show ways for further research.
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