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微血管对脑缺血/炎症的反应。

Microvascular responses to cerebral ischemia/inflammation.

作者信息

del Zoppo G J

机构信息

Department of Molecular and Experimental Medicine, Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Ann N Y Acad Sci. 1997 Aug 14;823:132-47. doi: 10.1111/j.1749-6632.1997.tb48386.x.

DOI:10.1111/j.1749-6632.1997.tb48386.x
PMID:9292040
Abstract

Experimental occlusion of a brain-supplying artery triggers tissue ischemia and subsequent inflammatory events that are initiated at the blood microvessel interface. Cytokine production and molecular adhesive events occur in the early moments following cerebral blood flow reduction, which underlie the transition from ischemic to inflammatory injury. Events both within the microvascular lumen and in the immediately surrounding tissue are involved. Cytokines, including TNF-alpha, IL-1 beta, IL-6, and PAF, are produced from the ischemic parenchyma and contribute to the endothelial cell expression of P-selectin, ICAM-1, and E-selectin. Platelet activation occurs paris passu and probably involves alpha-granule P-selectin to mediate PMN leukocyte-platelet interactions. Other integrin heterodimers are also involved in the early microvascular responses to ischemia. The response of the basal lamina and ECM is somewhat slower, entailing yet unproven mechanisms that most probably include the proteolytic processes of leukocyte transmigration. The modifications to microvascular structure are likely to affect both endothelial and astrocyte relationships, promote erythrocyte extravasation and hemorrhage, and contribute to tissue injury. Remodeling of the microvasculature, apparent in other tissues, involves a number of these processes. However, the enzymatic participants and regulating mechanisms are coming under study: the unraveling of regulatory mechanisms of adhesion receptor expression and their modulation, and the companion roles of integrins as mediators of structural integrity and intercellular signaling.

摘要

实验性阻断供应脑部的动脉会引发组织缺血以及随后在血液微血管界面启动的炎症事件。细胞因子的产生和分子黏附事件发生在脑血流量减少后的早期,这是从缺血性损伤向炎症性损伤转变的基础。微血管腔内和紧邻的周围组织中的事件均参与其中。细胞因子,包括肿瘤坏死因子-α、白细胞介素-1β、白细胞介素-6和血小板活化因子,由缺血实质产生,并有助于P-选择素、细胞间黏附分子-1和E-选择素在内皮细胞上的表达。血小板活化同时发生,可能涉及α-颗粒P-选择素介导中性粒细胞-血小板相互作用。其他整合素异二聚体也参与早期微血管对缺血的反应。基膜和细胞外基质的反应稍慢,涉及尚未证实的机制,但很可能包括白细胞迁移的蛋白水解过程。微血管结构的改变可能会影响内皮细胞与星形胶质细胞的关系,促进红细胞外渗和出血,并导致组织损伤。微血管重塑在其他组织中也很明显,涉及许多这些过程。然而,酶的参与者和调节机制正在研究中:黏附受体表达的调节机制及其调控的阐明,以及整合素作为结构完整性和细胞间信号传导介质的伴随作用。

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