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EphB4 在发育过程中在小鼠大脑前脑神经发生龛中的整个血管中呈现出发育和差异调节:对血管重塑的影响。

EphB4 is developmentally and differentially regulated in blood vessels throughout the forebrain neurogenic niche in the mouse brain: Implications for vascular remodeling.

机构信息

Departamento de Biología Celular y Fisiología and Grupo de Investigación de Células Troncales, IMPULSA 02, Instituto de Investigaciones Biomédicas Universidad Nacional Autónoma de México, 04510, Mexico.

出版信息

Brain Res. 2011 Apr 6;1383:90-8. doi: 10.1016/j.brainres.2011.01.110.

Abstract

Neurogenesis is a process influenced by environmental cues that create highly specific functional niches. Recently, the role of blood vessels in the maintenance and functioning of neurogenic niches during development and in adult life has been hallmarked. In addition to their trophic support for the highly demanding neurogenic process, blood vessels regulate neuroblast differentiation and migration and define functional domains. Since neurogenesis along the forebrain neurogenic niche (FNN) is a multistage process, in which neuroblast proliferation, differentiation and migration are spatially restricted to specific locations; we evaluated the structural features of vascular beds that support these processes during critical time points in their development. Additionally, we studied the molecular identity of the endothelial components of vascular beds using the expression of the venous marker EphB4. Our results show that blood vessels along the FNN: 1) are present very early in development; 2) define the borders of the FNN since early developmental stages; 3) experience constant remodeling until achieving their mature structure; 4) show venous features during perinatal developmental times; and 5) down-regulate their EphB4 expression as development proceeds. Collectively, our results describe the formation of the intricate vascular network that may support neurogenesis along the FNN and show that blood vessels along this neurogenic niche are dynamic entities that experience significant structural and molecular remodeling throughout development.

摘要

神经发生是一个受环境线索影响的过程,这些线索创造了高度特异的功能小生境。最近,血管在神经发生过程中的维持和功能中的作用已经得到了标记。除了对高度要求的神经发生过程的营养支持外,血管还调节神经母细胞的分化和迁移,并定义功能域。由于沿前脑神经发生龛(FNN)的神经发生是一个多阶段的过程,其中神经母细胞的增殖、分化和迁移在空间上局限于特定的位置;我们评估了血管床的结构特征,这些特征在其发育的关键时间点支持这些过程。此外,我们使用静脉标记物 EphB4 的表达来研究血管床的内皮成分的分子特征。我们的结果表明,沿 FNN 的血管:1)在发育早期就存在;2)自早期发育阶段以来定义 FNN 的边界;3)在达到成熟结构之前经历持续的重塑;4)在围产期发育期间表现出静脉特征;5)随着发育的进行,下调 EphB4 的表达。总之,我们的结果描述了错综复杂的血管网络的形成,这可能支持沿 FNN 的神经发生,并表明沿这个神经发生龛的血管是动态实体,在整个发育过程中经历显著的结构和分子重塑。

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