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A novel brain neurovascular unit model with neurons, astrocytes and microvascular endothelial cells of rat

机译:具有大鼠神经元,星形胶质细胞和微血管内皮细胞的新型脑神经血管单位模型

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A novel triple cell neurovascular unit (NVU) model co-culturing with neurons, brain microvascular endothelial cells (BMECs) and astrocytes was established in this study for investigating the cerebral diseases and screening the candidates of therapeutic drug. We have first performed the cell identification and morphological characterization, analyzed the specific protein expression and determined the blood-brain barrier (BBB) function of the co-culture model under normal condition. Then, we further determined the BBB function, inflammation, cell injury and the variation of neuroprotective factor in this model after anoxia-reoxygenation. The results suggest that this model exhibited a better BBB function and significantly increased expression of P-glycoprotein (Pg-P) and ZO-1 compared with BMECs only or co-culture with astrocytes or neurons. After anoxia-reoxygenation, the pathological changes of this model were basically resemblance to the pathological changes of brain cells and BBB in vivo. And nimodipine, an antagonist of calcium, could reverse those changes as well. According to our observations, we deduce that this triple cell co-culture model exhibits the basic structure, function and cell-cell interaction of NVU, which may offer a more proper in vitro system of NVU for the further investigation of cerebral diseases and drug screening. ? Ivyspring International Publisher.
机译:本研究建立了一种与神经元,脑微血管内皮细胞(BMEC)和星形胶质细胞共培养的新型三细胞神经血管单位(NVU)模型,用于研究脑疾病和筛选治疗药物的候选对象。我们首先进行了细胞鉴定和形态学表征,分析了特定蛋白的表达并确定了正常条件下共培养模型的血脑屏障(BBB)功能。然后,我们进一步确定了该模型在缺氧-复氧后的血脑屏障功能,炎症,细胞损伤和神经保护因子的变化。结果表明,与仅使用BMEC或与星形胶质细胞或神经元共培养相比,该模型表现出更好的BBB功能并显着增加P-糖蛋白(Pg-P)和ZO-1的表达。缺氧复氧后,该模型的病理变化与体内脑细胞和血脑屏障的病理变化基本相似。钙的拮抗剂尼莫地平也可以逆转这些变化。根据我们的观察,我们推断出这种三细胞共培养模型具有NVU的基本结构,功能和细胞间相互作用,这可能为NVU的体外系统研究提供了一个更合适的系统,以进一步研究脑疾病和药物筛选。 ?常春藤国际出版社。

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