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Regulation of Immune Cell Infiltration into the CNS by Regional Neural Inputs Explained by the Gate Theory

机译:门理论解释的区域神经输入调节免疫细胞渗透进入中枢神经系统

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摘要

The central nervous system (CNS) is an immune-privileged environment protected by the blood-brain barrier (BBB), which consists of specific endothelial cells that are brought together by tight junctions and tight liner sheets formed by pericytes and astrocytic end-feet. Despite the BBB, various immune and tumor cells can infiltrate the CNS parenchyma, as seen in several autoimmune diseases like multiple sclerosis (MS), cancer metastasis, and virus infections. Aside from a mechanical disruption of the BBB like trauma, how and where these cells enter and accumulate in the CNS from the blood is a matter of debate. Recently, using experimental autoimmune encephalomyelitis (EAE), an animal model of MS, we found a “gateway” at the fifth lumber cord where pathogenic autoreactive CD4+ T cells can cross the BBB. Interestingly, this gateway is regulated by regional neural stimulations that can be mechanistically explained by the gate theory. In this review, we also discuss this theory and its potential for treating human diseases.
机译:中枢神经系统(CNS)是受血脑屏障(BBB)保护的免疫特权环境,该血脑屏障由特定的内皮细胞组成,这些内皮细胞由紧密连接和由周细胞和星形胶质细胞终末形成的紧密内衬片聚集在一起。尽管有血脑屏障,但多种免疫和肿瘤细胞仍可渗入中枢神经系统实质,如多发性硬化症(MS),癌症转移和病毒感染等几种自身免疫性疾病中所见。除了诸如创伤的血脑屏障的机械破坏外,这些细胞如何以及在何处从血液进入并在中枢神经系统中积聚还存在争议。最近,使用实验性自身免疫性脑脊髓炎(MSE的动物模型),我们在第五条腰带发现了一条“网关”,致病性自身反应性CD4 + T细胞可以穿过血脑屏障。有趣的是,该通路受到区域神经刺激的调节,可以通过门理论来机械地解释。在本文中,我们还将讨论该理论及其在治疗人类疾病中的潜力。

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