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如何生成心脏:心脏祖细胞的起源和调控。

How to make a heart: the origin and regulation of cardiac progenitor cells.

机构信息

Institut Pasteur, Département de Biologie du Développement, CNRS URA 2578, Paris, France.

出版信息

Curr Top Dev Biol. 2010;90:1-41. doi: 10.1016/S0070-2153(10)90001-X.

Abstract

The formation of the heart is a complex morphogenetic process that depends on the spatiotemporally regulated contribution of cardiac progenitor cells. These mainly derive from the splanchnic mesoderm of the first and second heart field (SHF), with an additional contribution of neurectodermally derived neural crest cells that are critical for the maturation of the arterial pole of the heart. The origin and distinguishing characteristics of the two heart fields, as well as the relation of the SHF to the proepicardial organ and to a proposed third heart field are still subjects of debate. In the last ten years many genes that function in the SHF have been identified, leading to the establishment of a gene regulatory network in the mouse embryo. It is becoming increasingly evident that distinct gene networks control subdomains of the SHF that contribute to different parts of the heart. Although there is now extensive information about mutant phenotypes that reflect problems in the integration of progenitor cells into the developing heart, relatively little is known about the mechanisms that regulate SHF cell behavior. This important source of cardiac progenitor cells must be maintained as a proliferative, undifferentiated cell population. Selected subpopulations, at different development stages, are directed to myocardial, and also to smooth muscle and endothelial cell fates, as they integrate into the heart. Analysis of signaling pathways that impact the SHF, as well as regulatory factors, is beginning to reveal mechanisms that control cardiac progenitor cell behavior.

摘要

心脏的形成是一个复杂的形态发生过程,依赖于心脏祖细胞的时空调节贡献。这些祖细胞主要来源于第一和第二心脏场(SHF)的内脏中胚层,神经嵴细胞也有额外的贡献,对于心脏动脉极的成熟至关重要。两个心脏场的起源和区别特征,以及 SHF 与心前体细胞器官以及拟议的第三个心脏场的关系,仍然是争论的主题。在过去的十年中,许多在 SHF 中起作用的基因已经被鉴定出来,导致在小鼠胚胎中建立了一个基因调控网络。越来越明显的是,不同的基因网络控制 SHF 的不同亚域,这些亚域有助于心脏的不同部分。尽管现在有关于反映祖细胞整合到发育中的心脏中出现问题的突变表型的广泛信息,但相对而言,关于调节 SHF 细胞行为的机制知之甚少。这个心脏祖细胞的重要来源必须作为一个增殖的、未分化的细胞群体来维持。在不同的发育阶段,选择的亚群被导向心肌,以及平滑肌和内皮细胞命运,因为它们整合到心脏中。分析影响 SHF 的信号通路以及调节因子,开始揭示控制心脏祖细胞行为的机制。

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