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哺乳动物囊胚的着床前发育。

Development of Pre-implantation Mammalian Blastocyst.

机构信息

Department of Animal and Avian Sciences, University of Maryland, College Park, MD, USA.

Division of Animal Sciences, University of Missouri, Columbia, MO, USA.

出版信息

Adv Anat Embryol Cell Biol. 2021;234:21-40. doi: 10.1007/978-3-030-77360-1_3.

Abstract

The preimplantation mammalian embryo is a simplistic, self-contained, and a superior model for investigating the inherent complexities of cell fate decision mechanisms. All mammals begin their humble journey from a single-cell fertilized zygote contained within a proteinaceous coat called the zona pellucida. The zygote embarks on a series of well-orchestrated events, beginning with the activation of embryonic genome, transition from meiotic to mitotic divisions, spatial organization of the cells, timely differentiation into committed trophectoderm (TE) and primitive endoderm (PrE), and ultimately escape from zona pellucida for implantation into the uterus. The entire development of preimplantation embryo can be studied in vitro using a minimalistic and defined culture system. The ease of culture along with the ability to manipulate gene expression and image the embryos makes them an ideal model system for investigation into the first two of several cell fate decisions made by the embryo that result in a pluripotent epiblast (EPI) and differentiated TE and PrE lineages. This chapter reviews our latest knowledge of preimplantation embryo development, setting the stage for understanding placental development in subsequent chapters in this Book.

摘要

哺乳动物植入前胚胎是一个简单、自给自足的、优越的模型,可用于研究细胞命运决定机制的固有复杂性。所有哺乳动物都从一个单细胞受精卵开始,这个受精卵被一层叫做透明带的蛋白质外壳所包裹。受精卵开始经历一系列精心协调的事件,首先是胚胎基因组的激活,从减数分裂到有丝分裂的转变,细胞的空间组织,及时分化为特化滋养外胚层 (TE) 和原始内胚层 (PrE),最终从透明带中逃脱,植入子宫。整个植入前胚胎的发育都可以在体外使用最小化和定义明确的培养系统进行研究。胚胎易于培养,并且能够操纵基因表达和对胚胎进行成像,这使得它们成为研究胚胎做出的前两个细胞命运决定的理想模型系统,这些决定导致多能上胚层 (EPI) 和分化的 TE 和 PrE 谱系的形成。本章回顾了我们对植入前胚胎发育的最新认识,为本书后续章节中理解胎盘发育奠定了基础。

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