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CDK5-KD 星形胶质细胞移植在全脑缺血模型中恢复神经血管单元完整性。

Recovery of Neurovascular Unit Integrity by CDK5-KD Astrocyte Transplantation in a Global Cerebral Ischemia Model.

机构信息

Neuroscience Group of Antioquia, Cellular and Molecular Neurobiology Area, Faculty of Medicine, SIU, University of Antioquia, Calle 70, No. 52-21, Medellin, Colombia.

Institute of Biology, Faculty of Exact and Natural Sciences, University of Antioquia, Medellin, Colombia.

出版信息

Mol Neurobiol. 2018 Nov;55(11):8563-8585. doi: 10.1007/s12035-018-0992-1. Epub 2018 Mar 22.

Abstract

Astrocytes play metabolic and structural support roles and contribute to the integrity of the blood-brain barrier (BBB), linking communication between neurons and the endothelium. Cyclin-dependent kinase 5 (CDK5) likely exerts a dual effect on the endothelium and astrocytes due to its involvement in migration and angiogenesis; the overactivation of CDK5 is associated with dysfunction in glutamate recapture and hypoxia. Recently, we proposed that CDK5-targeted astrocytes facilitate the recovery of neurological and motor function in transplanted ischemic rats. In the current study, we treated cerebral ischemic rats and endothelial cells exposed to glutamate toxicity with CDK5 knock-down (CDK5-KD) astrocytes to determine the role of CDK5 in neurovascular integrity. We found that the effects of CDK5-KD were sustained for 4 months, preventing neuronal and astrocyte loss, facilitating the recovery of the BBB via the production of BDNF by endogenous astrocytes (GFP) surrounding vessels in the motor cortex and the corpus callosum of global ischemic rats, and improving neurological performance. These findings were supported by the in vitro findings of increased transendothelial resistance, p120-ctn+ adhesion and reduced intercellular gaps induced by a CDK5 inhibitor (roscovitine) in bEnd.3 cells in a glutamate-toxicity model. Additionally, CDK5-KD astrocytes in co-culture protected the endothelial cell viability, increased BDNF release from astrocytes, increased BDNF immunoreactivity in neighboring astrocytes and endothelial cells and enhanced cell adhesion in a glutamate-toxicity model. Altogether, these findings suggest that a CDK5 reduction in astrocytes protects the endothelium, which promotes BDNF release, endothelial adhesion, and the recovery of neurovascular unit integrity and brain function in ischemic rats.

摘要

星形胶质细胞发挥代谢和结构支持作用,并有助于血脑屏障(BBB)的完整性,连接神经元和内皮细胞之间的通讯。由于细胞周期蛋白依赖性激酶 5(CDK5)参与迁移和血管生成,它可能对内皮细胞和星形胶质细胞产生双重影响;CDK5 的过度激活与谷氨酸再摄取和缺氧功能障碍有关。最近,我们提出 CDK5 靶向星形胶质细胞有助于改善移植缺血大鼠的神经和运动功能恢复。在本研究中,我们用 CDK5 敲低(CDK5-KD)星形胶质细胞处理脑缺血大鼠和暴露于谷氨酸毒性的内皮细胞,以确定 CDK5 在神经血管完整性中的作用。我们发现 CDK5-KD 的作用持续了 4 个月,防止了神经元和星形胶质细胞的丢失,通过内源性星形胶质细胞(GFP)在运动皮层和全脑缺血大鼠的胼胝体周围血管中产生 BDNF,促进了 BBB 的恢复,并改善了神经功能。这些发现得到了体外实验的支持,即在谷氨酸毒性模型中,bEnd.3 细胞中 CDK5 抑制剂(罗西维林)增加了跨内皮电阻、p120-ctn+黏附和减少细胞间间隙。此外,共培养的 CDK5-KD 星形胶质细胞保护内皮细胞活力,增加星形胶质细胞释放的 BDNF,增加相邻星形胶质细胞和内皮细胞中的 BDNF 免疫反应性,并增强谷氨酸毒性模型中的细胞黏附。总之,这些发现表明星形胶质细胞中 CDK5 的减少可以保护内皮细胞,促进 BDNF 的释放、内皮细胞的黏附和神经血管单元完整性以及缺血大鼠大脑功能的恢复。

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