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血脑屏障发育的当前概念。

Current concepts of blood-brain barrier development.

作者信息

Liebner Stefan, Czupalla Cathrin J, Wolburg Hartwig

机构信息

Blood-Brain Barrier Signaling Group, Institute of Neurology, Edinger-Institute, Medical School, Goethe University Frankfurt, Germany.

出版信息

Int J Dev Biol. 2011;55(4-5):467-76. doi: 10.1387/ijdb.103224sl.

Abstract

Homeostasis of the central nervous system (CNS) microenvironment is essential for its normal function and is maintained by the blood-brain barrier (BBB). The BBB proper is made up of endothelial cells (ECs) interconnected by tight junctions (TJs) that reveal a unique morphology and biochemical composition of the body's vasculature. In this article, we focus on developmental aspects of the BBB and describe morphological as well as molecular special features of the neuro-vascular unit (NVU) involved in barrier induction. Recently, we and others identified the Wnt/b-catenin pathway as crucial for brain angiogenesis, TJ and BBB formation. Based on these findings we discuss other pathways and molecular interactions for BBB establishment and maintenance. At the morphological level, our concept favors a major role for polarized astrocytes (ACs) therein. Orthogonal arrays of particles (OAPs) that are the morphological correlate of the water channel protein aquaporin-4 (AQP4) are specifically formed in the membrane of the AC endfoot. The polarized AC endfoot and hence OAPs are dependent on agrin and dystroglycan, of which agrin is a developmentally regulated extracellular matrix (ECM) component. Understanding the mechanisms leading to BBB development will be key to the understanding of barrier maintenance that is crucial for, but frequently disturbed, in the diseased adult brain.

摘要

中枢神经系统(CNS)微环境的稳态对其正常功能至关重要,并由血脑屏障(BBB)维持。血脑屏障本身由通过紧密连接(TJ)相互连接的内皮细胞(EC)组成,这些紧密连接显示出身体脉管系统独特的形态和生化组成。在本文中,我们重点关注血脑屏障的发育方面,并描述参与屏障诱导的神经血管单元(NVU)的形态学以及分子特征。最近,我们和其他人确定Wnt/β-连环蛋白通路对脑血管生成、紧密连接和血脑屏障形成至关重要。基于这些发现,我们讨论了血脑屏障建立和维持的其他通路和分子相互作用。在形态学水平上,我们的概念支持极化星形胶质细胞(AC)在其中起主要作用。水通道蛋白-4(AQP4)水通道蛋白的形态学相关物——颗粒正交排列(OAP),在AC终足膜中特异性形成。极化的AC终足以及因此的OAP依赖于聚集蛋白和抗肌萎缩蛋白聚糖,其中聚集蛋白是一种受发育调节的细胞外基质(ECM)成分。了解导致血脑屏障发育的机制将是理解屏障维持的关键,而屏障维持对患病的成人大脑至关重要,但经常受到干扰。

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