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Cellular and Molecular Mechanisms of R/S-Roscovitine and CDKs Related Inhibition under Both Focal and Global Cerebral Ischemia: A Focus on Neurovascular Unit and Immune Cells

机译:R / S-Roscovitine的细胞和分子机制和Cdks在局灶性和全球性脑缺血下有关的抑制作用:重点是神经血管单位和免疫细胞

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摘要

Ischemic stroke is the second leading cause of death worldwide. Following ischemic stroke, Neurovascular Unit (NVU) inflammation and peripheral leucocytes infiltration are major contributors to the extension of brain lesions. For a long time restricted to neurons, the 10 past years have shown the emergence of an increasing number of studies focusing on the role of Cyclin-Dependent Kinases (CDKs) on the other cells of NVU, as well as on the leucocytes. The most widely used CDKs inhibitor, (R)-roscovitine, and its (S) isomer both decreased brain lesions in models of global and focal cerebral ischemia. We previously showed that (S)-roscovitine acted, at least, by modulating NVU response to ischemia. Interestingly, roscovitine was shown to decrease leucocytes-mediated inflammation in several inflammatory models. Specific inhibition of roscovitine majors target CDK 1, 2, 5, 7, and 9 showed that these CDKs played key roles in inflammatory processes of NVU cells and leucocytes after brain lesions, including ischemic stroke. The data summarized here support the investigation of roscovitine as a potential therapeutic agent for the treatment of ischemic stroke, and provide an overview of CDK 1, 2, 5, 7, and 9 functions in brain cells and leucocytes during cerebral ischemia.
机译:缺血性中风是全世界第二次死亡原因。在缺血性中风后,神经血管单位(NVU)炎症和外周白细胞浸润是脑病变延伸的主要贡献者。长期受到神经元的限制,这10年的10年已经表明出现了越来越多的研究,这些研究侧重于细胞周期蛋白依赖性激酶(CDKs)对NVU的其他细胞以及白细胞的作用。最广泛使用的CDK抑制剂,(R)-ROSCOVITINE,及其异构体均在全球和局灶性脑缺血模型中降低脑病变。我们以前表明,至少通过调节NVU对缺血的反应来作用的-Roscovitine。有趣的是,Roscovitine被证明可以降低白细胞介导的几种炎症模型中的炎症。特异性抑制roscovitine专业靶标记1,2,5,7和9的特异性抑制表明,这些CDK在脑病变后的NVU细胞和白细胞的炎性过程中发挥了关键作用,包括缺血性卒中。这里概述的数据支持Roscovitine作为治疗缺血性卒中的潜在治疗剂的调查,并在脑缺血期间概述脑细胞和白细胞中的CDK 1,2,5,7和9功能。

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