Primitive-streak origin and state of commitment of cells of the cardiovascular system in avian and mammalian embryos.

G C Schoenwolf, V Garcia-Martinez
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Abstract

Early events of cardiovascular development have received renewed interest in recent years. The cardiovascular system is the first major organ system to become functional during early embryogenesis. Cells fated to form the cardiovascular system can be identified as early as during stages of gastrulation of avian and mammalian embryos. In the present brief summary, we describe the primitive-streak origin of the avian cardiovascular system and examine the state of commitment of prospective cardiogenic and vasculogenic areas of the primitive streak. In addition, we describe initial experiments aimed at elucidating the primitive-streak origin of the heart in mouse embryos. Finally, we consider the possible roles of Hensen's node and the "cardiac" endoderm in determination of cell fate and patterning of the avian developing heart tube. Although recent studies have shed considerable light on the origin, migration, and determination of the cardiovascular system, much still remains to be learned about mechanisms underlying cardiovascular patterning in the early embryo.

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鸟类和哺乳动物胚胎中心血管系统细胞的原始条纹起源和承诺状态。
近年来,人们对心血管发展的早期事件重新产生了兴趣。心血管系统是胚胎早期发育的第一个主要器官系统。早在鸟类和哺乳动物胚胎的原肠胚形成阶段,就可以确定形成心血管系统的细胞。在目前的简要总结中,我们描述了鸟类心血管系统的原始条纹起源,并检查了原始条纹的潜在心源和血管生成区域的承诺状态。此外,我们描述了旨在阐明小鼠胚胎心脏原始条纹起源的初步实验。最后,我们考虑了Hensen's结和“心脏”内胚层在决定鸟类心脏管发育的细胞命运和模式中的可能作用。尽管最近的研究对心血管系统的起源、迁移和决定有了相当大的了解,但关于早期胚胎中心血管模式的机制仍有待了解。
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