首页> 外文期刊>Cellular and Molecular Neurobiology >Pigment Epithelium-Derived Factor Improves Paracellular Blood-Brain Barrier Integrity in the Normal and Ischemic Mouse Brain
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Pigment Epithelium-Derived Factor Improves Paracellular Blood-Brain Barrier Integrity in the Normal and Ischemic Mouse Brain

机译:颜料上皮衍生的因子改善了正常和缺血小鼠脑中的肺血糖障碍完整性

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摘要

Pigment epithelium-derived factor (PEDF) is a neurotrophic factor with neuroprotective, antiangiogenic, and antipermeability effects. In the brain, blood-brain barrier (BBB) function is essential for homeostasis. Its impairment plays a crucial role in the pathophysiology of many neurological diseases, including ischemic stroke. We investigated (a) whether PEDF counteracted vascular endothelial growth factor (VEGF)-induced BBB disruption in the mouse brain, (b) the time course and route of BBB permeability and the dynamics of PEDF expression after cerebral ischemia, and (c) whether intraventricular infusion of PEDF ameliorated brain ischemia by reducing BBB impairment. C57Bl6/N mice received intraparenchymal injections of CSF, VEGF, or a combination of VEGF and PEDF. PEDF increased paracellular but not transcellular BBB integrity as indicated by an increase in the tight junction protein claudin-5. In another group of mice undergoing 60-min middle cerebral artery occlusion (MCAO), transcellular BBB permeability (fibrinogen staining in the absence of a loss of claudin-5) increased as early as 6 h after reperfusion. PEDF immunofluorescence increased at 24 h, which paralleled with a decreased paracellular BBB permeability (claudin-5). PEDF after MCAO originated from the blood stream and endogenous pericytes. In the third experiment, the intraventricular infusion of PEDF decreased edema and cell death after MCAO, potentially mediated by the improvement of the paracellular route of BBB permeability (claudin-5) in the absence of an amelioration of Evans Blue extravasation. Together, our data suggest that PEDF improves BBB function after cerebral ischemia by affecting the paracellular but not the transcellular route. However, further quantitative data of the different routes of BBB permeability will be required to validate our findings.
机译:颜料上皮衍生的因子(PEDF)是具有神经保护,抗血管生成和抗抗抗性效应的神经营养因子。在大脑中,血脑屏障(BBB)功能对于稳态至关重要。其损伤在许多神经疾病的病理生理学中起着至关重要的作用,包括缺血性卒中。我们研究了(a)PEDF是否抵消血管内皮生长因子(VEGF) - 诱导小鼠脑中的BBB破坏,(b)BBB渗透率的时间和路线和脑缺血后PEDF表达的动态,(C)是否通过降低BBB损伤,脑内输注PEDF改善脑缺血。 C57Bl6 / n小鼠接受了CSF,VEGF或VEGF和PEDF组合的脑结。 PEDF增加了荚膜细胞,但不是透晶的BBB完整性,如紧密结蛋白克劳蛋白-5的增加所示。在接受60分钟的中脑动脉闭塞(MCAO)的另一组小鼠中,在再灌注后早6小时,叶片BBB渗透率(在没有克劳蛋白-5的损失的情况下染色的纤维蛋白原染色)增加。 PEDF免疫荧光在24小时增加,其平行于降低的荚膜BBB渗透率(Claudin-5)。 MCAO源自血流和内源周细胞后PEDF。在第三个实验中,MCAO后PEDF的脑室输注降低了水肿和细胞死亡,可能通过改善BBB渗透率(CLAUDIN-5)的肺肺纤维化途径而缺乏埃文斯蓝渗透的改善。我们的数据在一起表明,通过影响静脉曲张但不是牙细胞途径,PEDF在脑缺血后改善BBB功能。然而,将需要进一步的BBB渗透路线的定量数据来验证我们的研究结果。

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