首页> 外文期刊>Frontiers in Immunology >PECAM-1 Stabilizes Blood-Brain Barrier Integrity and Favors Paracellular T-Cell Diapedesis Across the Blood-Brain Barrier During Neuroinflammation
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PECAM-1 Stabilizes Blood-Brain Barrier Integrity and Favors Paracellular T-Cell Diapedesis Across the Blood-Brain Barrier During Neuroinflammation

机译:PECAM-1稳定了神经屏障在神经炎症过程中跨血屏障的血脑屏障完整性并有利于跨细胞T细胞渗尿。

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Breakdown of the blood-brain barrier (BBB) and increased immune cell trafficking into the central nervous system (CNS) are hallmarks of the pathogenesis of multiple sclerosis (MS). Platelet endothelial cell adhesion molecule-1 (PECAM-1; CD31) is expressed on cells of the vascular compartment and regulates vascular integrity and immune cell trafficking. Involvement of PECAM-1 in MS pathogenesis has been suggested by the detection of increased levels of soluble PECAM-1 (sPECAM-1) in the serum and CSF of MS patients. Here, we report profound upregulation of cell-bound PECAM-1 in initial (pre-phagocytic) white matter as well as active cortical gray matter MS lesions. Using a human in vitro BBB model we observed that PECAM-1 is not essential for the transmigration of human CD4 ~(+) T-cell subsets (Th1, Th1 ~(*), Th2, and Th17) across the BBB. Employing an additional in vitro BBB model based on primary mouse brain microvascular endothelial cells (pMBMECs) we show that the lack of endothelial PECAM-1 impairs BBB properties as shown by reduced transendothelial electrical resistance (TEER) and increases permeability for small molecular tracers. Investigating T-cell migration across the BBB under physiological flow by in vitro live cell imaging revealed that absence of PECAM-1 in pMBMECs did not influence arrest, polarization, and crawling of effector/memory CD4 ~(+) T cells on the pMBMECs. Absence of endothelial PECAM-1 also did not affect the number of T cells able to cross the pMBMEC monolayer under flow, but surprisingly favored transcellular over paracellular T-cell diapedesis. Taken together, our data demonstrate that PECAM-1 is critically involved in regulating BBB permeability and although not required for T-cell diapedesis itself, its presence or absence influences the cellular route of T-cell diapedesis across the BBB. Upregulated expression of cell-bound PECAM-1 in human MS lesions may thus reflect vascular repair mechanisms aiming to restore BBB integrity and paracellular T-cell migration across the BBB as it occurs during CNS immune surveillance.
机译:血脑屏障(BBB)的破坏和免疫细胞向中枢神经系统(CNS)转运的增加是多发性硬化症(MS)发病机理的标志。血小板内皮细胞粘附分子-1(PECAM-1; CD31)在血管区室的细胞上表达,并调节血管完整性和免疫细胞运输。通过检测MS患者血清和CSF中可溶性PECAM-1(sPECAM-1)水平的升高,提示PECAM-1参与MS发病机制。在这里,我们报道了初始(吞噬前)白质以及活动性皮质灰质MS病变中细胞结合的PECAM-1的上调程度。使用人类体外BBB模型,我们观察到PECAM-1对于人类CD4〜(+)T细胞亚群(Th1,Th1〜(*),Th2和Th17)跨BBB的迁移不是必需的。使用基于原代小鼠脑微血管内皮细胞(pMBMECs)的其他体外BBB模型,我们发现缺乏内皮PECAM-1会损害BBB特性,如降低的跨内皮电阻(TEER)所示,并增加小分子示踪剂的通透性。通过体外活细胞成像研究在生理流下跨BBB的T细胞迁移发现,pMBMEC中PECAM-1的缺失不会影响pMBMEC上效应子/记忆CD4〜(+)T细胞的阻滞,极化和爬行。缺乏内皮PECAM-1也不影响流动时能够穿过pMBMEC单层的T细胞的数量,但出人意料地偏向跨细胞而非跨细胞T细胞的渗尿。两者合计,我们的数据表明PECAM-1至关重要地参与调节BBB的通透性,尽管T细胞尿布分离本身并不需要,但它的存在与否会影响T细胞尿布渗入BBB的细胞途径。因此,人MS病变中与细胞结合的PECAM-1的表达上调可能反映了血管修复机制,旨在恢复BBB的完整性和跨BBB的细胞旁T细胞在CNS免疫监视过程中的迁移。

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