首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Comparison of immortalized bEnd5 and primary mouse brain microvascular endothelial cells as in vitro blood–brain barrier models for the study of T cell extravasation
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Comparison of immortalized bEnd5 and primary mouse brain microvascular endothelial cells as in vitro blood–brain barrier models for the study of T cell extravasation

机译:比较永生化的bEnd5和原代小鼠脑微血管内皮细胞作为体外血脑屏障模型来研究T细胞外渗

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摘要

Important insights into the molecular mechanism of T cell extravasation across the blood–brain barrier (BBB) have already been obtained using immortalized mouse brain endothelioma cell lines (bEnd). However, compared with bEnd, primary brain endothelial cells have been shown to establish better barrier characteristics, including complex tight junctions and low permeability. In this study, we asked whether bEnd5 and primary mouse brain microvascular endothelial cells (pMBMECs) were equally suited as in vitro models with which to study the cellular and molecular mechanisms of T cell extravasation across the BBB. We found that both in vitro BBB models equally supported both T cell adhesion under static and physiologic flow conditions, and T cell crawling on the endothelial surface against the direction of flow. In contrast, distances of T cell crawling on pMBMECs were strikingly longer than on bEnd5, whereas diapedesis of T cells across pMBMECs was dramatically reduced compared with bEnd5. Thus, both in vitro BBB models are suited to study T cell adhesion. However, because pMBMECs better reflect endothelial BBB specialization in vivo, we propose that more reliable information about the cellular and molecular mechanisms of T cell diapedesis across the BBB can be attained using pMBMECs.
机译:使用永生化的小鼠脑内皮细胞瘤细胞系(bEnd),已经获得了跨血脑屏障(BBB)T细胞外渗的分子机制的重要见解。但是,与bEnd相比,已显示原代脑内皮细胞可建立更好的屏障特性,包括复杂的紧密连接和低渗透性。在这项研究中,我们询问bEnd5和原代小鼠脑微血管内皮细胞(pMBMEC)是否同样适合作为体外模型,用于研究跨BBB的T细胞外渗的细胞和分子机制。我们发现,两种体外BBB模型均支持静态和生理流动条件下的T细胞粘附,以及T细胞逆着流动方向在内皮表面上爬行。相比之下,pMBMEC上的T细胞爬行距离比bEnd5上显着长,而与bEnd5相比,跨pMBMEC的T细胞的尿布分离明显减少。因此,两种体外BBB模型都适合研究T细胞粘附。但是,由于pMBMECs可以更好地反映体内内皮BBB的专一性,因此我们建议使用pMBMECs可以获得有关整个BBB的T细胞渗血的细胞和分子机制的更可靠信息。

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