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血管周围间隙与神经炎症的两个阶段。

Perivascular spaces and the two steps to neuroinflammation.

作者信息

Owens Trevor, Bechmann Ingo, Engelhardt Britta

机构信息

Medical Biotechnology Center, University of Southern Denmark, Odense C, Denmark.

出版信息

J Neuropathol Exp Neurol. 2008 Dec;67(12):1113-21. doi: 10.1097/NEN.0b013e31818f9ca8.

Abstract

Immune cells enter the central nervous system (CNS) from the circulation under normal conditions for immunosurveillance and in inflammatory neurologic diseases. This review describes the distinct anatomic features of the CNS vasculature that permit it to maintain parenchymal homeostasis and which necessitate specific mechanisms for neuroinflammation to occur. We review the historical evolution of the concept of the blood-brain barrier and discuss distinctions between diffusion/transport of solutes and migration of cells from the blood to CNS parenchyma. The former is regulated at the level of capillaries, whereas the latter takes place in postcapillary venules. We summarize evidence that entry of immune cells into the CNS parenchyma in inflammatory conditions involves 2 differently regulated steps: transmigration of the vascular wall into the perivascular space and progression across the glia limitans into the parenchyma.

摘要

在正常情况下,免疫细胞从循环系统进入中枢神经系统(CNS)以进行免疫监视,在炎症性神经疾病中亦是如此。本综述描述了CNS脉管系统的独特解剖特征,这些特征使其能够维持实质内稳态,并且神经炎症的发生需要特定机制。我们回顾了血脑屏障概念的历史演变,并讨论了溶质扩散/转运与细胞从血液迁移至CNS实质之间的区别。前者在毛细血管水平受到调节,而后者发生在毛细血管后微静脉。我们总结了证据,表明在炎症条件下免疫细胞进入CNS实质涉及两个不同调节的步骤:穿过血管壁进入血管周围间隙以及穿过胶质界膜进入实质。

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