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Changes in blood-brain barrier permeability and ultrastructure, and protein expression in a rat model of cerebral hypoperfusion

机译:脑屏障渗透性和超微结构的变化,脑低血灌注大鼠模型中的蛋白质表达

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Cerebral hypoperfusion involved a reduction in cerebral blood flow, leading to neuronal dysfunction, microglial activation and white matter degeneration. The effects on the blood-brain barrier (BBB) however, have not been well-documented. Here, two-vessel occlusion model was adopted to mimic the condition of cerebral hypoperfusion in Sprague-Dawley rats. The BBB permeability to high and low molecular weight exogenous tracers i.e. Evans blue dye and sodium fluorescein respectively, showed marked extravasation of the Evans blue dye in the frontal cortex, posterior cortex and thalamus-midbrain at day 1 following induction of cerebral hypoperfusion. Transmission electron microscopy revealed brain endothelial cell and astrocyte damages including increased pinocytotic vesicles and formation of membrane invaginations in the endothelial cells, and swelling of the astrocytes' end-feet. Investigation on brain microvessel protein expressions using two-dimensional (2D) gel electrophoresis coupled with LC-MS/MS showed that proteins involved in mitochondrial energy metabolism, transcription regulation, cytoskeleton maintenance and signaling pathways were differently expressed. The expression of aconitate hydratase, heterogeneous nuclear ribonucleoprotein, enoyl Co-A hydratase and beta-synuclein were downregulated, while the opposite observed for calreticulin and enhancer of rudimentary homolog. These findings provide insights into the BBB molecular responses to cerebral hypoperfusion, which may assist development of future therapeutic strategies.
机译:脑下熔化涉及降低脑血流量,导致神经元功能障碍,小胶质激活和白质变性。然而,对血脑屏障(BBB)的影响尚未妥善记录。这里,采用了两艘血管闭塞模型来模仿Sprague-Dawley大鼠脑下灌注的状况。 BBB渗透率为高和低分子量外源跟踪器I.E.Scans蓝染料和荧光素,在诱导脑下灌注后第1天在第1天在第1天在第1天在额外皮层中的evans蓝染料的显着渗入。透射电子显微镜显示脑内皮细胞和星形胶质细胞损伤,包括增加小核细胞囊泡和内皮细胞中的膜侵袭,并肿胀星形胶质细胞端脚。使用二维(2D)凝胶电泳的脑微血管蛋白表达的研究表明,不同表达了参与线粒体能量代谢,转录调节,细胞骨架维持和信号通路的蛋白质。焦炭分子水裂化酶,异构核核糖核糖蛋白,eNOYLCO-HYDALIC酶和β-突触核蛋白的表达是下调的,而钙霉素和基本同源物的增强剂观察到的相反。这些调查结果为BBB分子反应提供了对脑低血量灌注的见解,这可能有助于开发未来的治疗策略。

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