Bolton S J, Anthony D C, Perry V H
Department of Pharmacology, University of Oxford, U.K.
Neuroscience. 1998 Oct;86(4):1245-57. doi: 10.1016/s0306-4522(98)00058-x.
The tight junctions found between cerebral vascular endothelial cells form the basis of the blood-brain barrier. Breakdown of the blood-brain barrier is a feature of a variety of CNS pathologies that are characterized by extensive leucocyte recruitment, such as multiple sclerosis and stroke. The molecular mechanisms associated with opening of the blood-brain barrier and leucocyte recruitment in vivo are currently poorly understood. We have used an in vivo rat model to investigate the molecular response of the CNS endothelium to neutrophil adhesion and migration. Injection of interleukin-1 beta into the striatum of juvenile brains results in a neutrophil-dependent increase in vessel permeability at 4 h. Only a subset of blood vessels were associated with neutrophil recruitment. These particular vessels displayed an increase in phosphotyrosine staining, loss of the tight junctional proteins, occludin and zonula occludens-1, and apparent redistribution of the adherens junction protein vinculin. Examination of these vessels under the electron microscope indicated that the cell-cell adhesions in such vessels are morphologically different from normal junctions. This study provides the first direct evidence in vivo that leucocyte recruitment can trigger signal transduction cascades leading to junctional disorganization and blood-brain barrier breakdown. Our results have established an endothelial cell molecular profile associated with leucocyte-induced blood-brain barrier breakdown in vivo, and the relevance of different in vitro cell culture models may now be viewed more objectively.
脑血管内皮细胞间的紧密连接构成了血脑屏障的基础。血脑屏障的破坏是多种中枢神经系统病理状态的一个特征,这些病理状态的特点是有大量白细胞募集,如多发性硬化症和中风。目前,对于体内血脑屏障开放和白细胞募集相关的分子机制了解甚少。我们使用了一种体内大鼠模型来研究中枢神经系统内皮细胞对中性粒细胞黏附和迁移的分子反应。向幼鼠大脑纹状体注射白细胞介素-1β会在4小时时导致血管通透性在中性粒细胞依赖的情况下增加。只有一部分血管与中性粒细胞募集有关。这些特定的血管显示出磷酸酪氨酸染色增加、紧密连接蛋白occludin和闭合蛋白-1丢失,以及黏附连接蛋白纽蛋白明显重新分布。在电子显微镜下检查这些血管表明,此类血管中的细胞间黏附在形态上与正常连接不同。这项研究提供了体内首个直接证据,即白细胞募集可触发信号转导级联反应,导致连接紊乱和血脑屏障破坏。我们的结果建立了一种与体内白细胞诱导的血脑屏障破坏相关的内皮细胞分子图谱,现在可以更客观地看待不同体外细胞培养模型的相关性。