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滋养层干细胞

Trophoblast stem cells.

作者信息

Oda Mayumi, Shiota Kunio, Tanaka Satoshi

机构信息

Animal Resource Sciences and Veterinary Medical Sciences, Laboratory of Cellular Biochemistry, The University of Tokyo, Japan.

出版信息

Methods Enzymol. 2006;419:387-400. doi: 10.1016/S0076-6879(06)19015-1.

Abstract

At the first cell fate decision in mammalian development, the origins of trophoblast and embryonic cell lineages are established as the trophectoderm and the inner cell mass (ICM) in the blastocyst. In the trophoblast cell lineage, a subset of the trophectoderm cells maintains the capacity to proliferate and contribute to the extraembryonic ectoderm, the ectoplacental cone, and the secondary giant cells of the early conceptus after implantation, and finally they produce the entire trophoblastic population in the mature placenta. The stem cell population of the trophectoderm lineage can be isolated and maintained in vitro in the presence of fibroblast growth factor 4, heparin, and a feeder layer of mouse embryonic fibroblast cells. These apparently immortal stem cells in culture are termed trophoblast stem (TS) cells, and exhibit the potential to differentiate into multiple trophoblastic cell types in vitro, as well as in vivo. Even after multiple passages, TS cells retain the ability to participate in the normal development of chimeras and contribute exclusively to the trophoblastic component of the placenta and of the parietal yolk sac. The fate of TS cells is strikingly in contrast to that of embryonic stem cells, which never contribute to these tissues. In this chapter, detailed protocols for the isolation and establishment of TS cell lines from blastocysts and their maintenance are described.

摘要

在哺乳动物发育的首次细胞命运决定过程中,滋养层和胚胎细胞谱系的起源在囊胚中确立为滋养外胚层和内细胞团(ICM)。在滋养层细胞谱系中,一部分滋养外胚层细胞保持增殖能力,并在植入后对胚外外胚层、外胎盘锥和早期孕体的次级巨细胞做出贡献,最终它们在成熟胎盘中产生整个滋养层细胞群体。在成纤维细胞生长因子4、肝素和小鼠胚胎成纤维细胞饲养层存在的情况下,滋养外胚层谱系的干细胞群体可以在体外分离并维持。培养中这些明显永生的干细胞被称为滋养层干细胞(TS细胞),并在体外以及体内表现出分化为多种滋养层细胞类型的潜力。即使经过多次传代,TS细胞仍保留参与嵌合体正常发育的能力,并且仅对胎盘和壁层卵黄囊的滋养层成分有贡献。TS细胞的命运与胚胎干细胞的命运形成鲜明对比,胚胎干细胞从不参与这些组织的形成。在本章中,将描述从囊胚中分离和建立TS细胞系及其维持的详细方案。

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