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整合素介导的神经血管发育、生理及疾病调控

Integrin-mediated regulation of neurovascular development, physiology and disease.

作者信息

McCarty Joseph H

机构信息

Department of Cancer Biology, University of Texas M.D. Anderson Cancer Center, Houston, 77030, USA.

出版信息

Cell Adh Migr. 2009 Apr-Jun;3(2):211-5. doi: 10.4161/cam.3.2.7767. Epub 2009 Apr 6.

Abstract

The mammalian central nervous system (CNS) is comprised of billions of neurons and glia that are intertwined with an elaborate network of blood vessels. These various neural and vascular cell types actively converse with one another to form integrated, multifunctional complexes, termed neurovascular units. Cell-cell communication within neurovascular units promotes normal CNS development and homeostasis, and abnormal regulation of these events leads to a variety of debilitating CNS diseases. This review will summarize (1) cellular and molecular mechanisms that regulate physiological assembly and maintenance of neurovascular units; and (2) signaling events that induce pathological alterations in neurovascular unit formation and function. An emphasis will be placed on neural-vascular cell adhesion events mediated by integrins and their extracellular matrix (ECM) ligands. I will highlight the role of a specific adhesion and signaling axis involving alphavbeta8 integrin, latent transforming growth factor beta's (TGFbeta's), and canonical TGFbeta receptors. Possible functional links between components of this axis and other signal transduction cascades implicated in neurovascular development and disease will be discussed. Comprehensively understanding the pathways that regulate bidirectional neural-vascular cell contact and communication will provide new insights into the mechanisms of neurovascular unit development, physiology and disease.

摘要

哺乳动物的中枢神经系统(CNS)由数十亿个神经元和神经胶质细胞组成,它们与错综复杂的血管网络相互交织。这些不同的神经和血管细胞类型相互积极交流,形成了称为神经血管单元的整合多功能复合体。神经血管单元内的细胞间通讯促进中枢神经系统的正常发育和稳态,而这些过程的异常调节会导致多种使人衰弱的中枢神经系统疾病。本综述将总结:(1)调节神经血管单元生理组装和维持的细胞和分子机制;(2)诱导神经血管单元形成和功能发生病理改变的信号事件。重点将放在由整合素及其细胞外基质(ECM)配体介导的神经血管细胞粘附事件上。我将强调涉及αvβ8整合素、潜伏转化生长因子β(TGFβ)和经典TGFβ受体的特定粘附和信号轴的作用。将讨论该轴的组成部分与神经血管发育和疾病中涉及的其他信号转导级联之间可能的功能联系。全面了解调节神经血管细胞双向接触和通讯的途径将为神经血管单元发育、生理学和疾病的机制提供新的见解。

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