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分子信号指导神经板边界形成。

Molecular signaling directing neural plate border formation.

机构信息

Cellular and Molecular Research Center, Gerash University of Medical Sciences, Gerash, Iran.

Medical Biology Research Center, Kermanshah University of Medical Sciences, Kermanshah, Iran.

出版信息

Int J Dev Biol. 2024 Jul 9;68(2):65-78. doi: 10.1387/ijdb.230231me.

Abstract

During embryonic development, the vertebrate embryonic epiblast is divided into two parts including neural and superficial ectoderm. The neural plate border (NPB) is a narrow transitional area which locates between these parts and contains multipotent progenitor cells. Despite its small size, the cellular heterogeneity in this region produces specific differentiated cells. Signaling pathways, transcription factors, and the expression/repression of certain genes are directly involved in these differentiation processes. Different factors such as the Wnt signaling cascade, fibroblast growth factor (FGF), bone morphogenetic protein (BMP) signaling, and Notch, which are involved in various stages of the growth, proliferation, and differentiation of embryonic cells, are also involved in the determination and differentiation of neural plate border stem cells. Therefore, it is essential to consider the interactions and temporospatial coordination related to cells, tissues, and adjacent structures. This review examines our present knowledge of the formation of the neural plate border and emphasizes the requirement for interaction between different signaling pathways, including the BMP and Wnt cascades, the expression of its special target genes and their regulations, and the precise tissue crosstalk which defines the neural crest fate in the ectoderm at the early human embryonic stages.

摘要

在胚胎发育过程中,脊椎动物胚胎外胚层分为神经和表皮外胚层两部分。神经板边界(NPB)是位于这两部分之间的一个狭窄的过渡区域,包含多能祖细胞。尽管这个区域很小,但其中的细胞异质性产生了特定的分化细胞。信号通路、转录因子以及某些基因的表达/抑制直接参与了这些分化过程。不同的因素,如 Wnt 信号级联、成纤维细胞生长因子(FGF)、骨形态发生蛋白(BMP)信号以及 Notch 等,参与了胚胎细胞的生长、增殖和分化的各个阶段,也参与了神经板边界干细胞的决定和分化。因此,必须考虑与细胞、组织和相邻结构相关的相互作用和时空协调。本综述检查了我们目前对神经板边界形成的认识,并强调了不同信号通路之间相互作用的必要性,包括 BMP 和 Wnt 级联、其特殊靶基因的表达及其调控,以及在早期人类胚胎阶段在外胚层中精确的组织串扰,决定神经嵴命运。

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