首页> 外文期刊>Seminars in immunopathology >Knocking at the brain's door: intravital two-photon imaging of autoreactive T cell interactions with CNS structures.
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Knocking at the brain's door: intravital two-photon imaging of autoreactive T cell interactions with CNS structures.

机译:敲门:自反应性T细胞与CNS结构相互作用的活体双光子成像。

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摘要

Since the first applications of two-photon microscopy in immunology 10 years ago, the number of studies using this advanced technology has increased dramatically. The two-photon microscope allows long-term visualization of cell motility in the living tissue with minimal phototoxicity. Using this technique, we examined brain autoantigen-specific T cell behavior in experimental autoimmune encephalitomyelitis, the animal model of human multiple sclerosis. Even before disease symptoms appear, the autoreactive T cells arrive at their target organ. There they crawl along the intraluminal surface of central nervous system (CNS) blood vessels before they extravasate. In the perivascular environment, the T cells meet phagocytes that present autoantigens. This contact activates the T cells to penetrate deep into the CNS parenchyma, where the infiltrated T cells again can find antigen, be further activated, and produce cytokines, resulting in massive immune cell recruitment and clinical disease.
机译:自从10年前双光子显微镜技术在免疫学中首次应用以来,使用这种先进技术的研究数量已急剧增加。双光子显微镜可在最小光毒性的情况下长期观察活组织中的细胞运动。使用这种技术,我们在实验性自身免疫性脑脊髓炎(人类多发性硬化症的动物模型)中检查了脑自身抗原特异性T细胞的行为。甚至在疾病症状出现之前,自身反应性T细胞就会到达其靶器官。他们在那里渗出之前沿着中枢神经系统(CNS)血管的腔内表面爬行。在血管周围环境中,T细胞与呈递自身抗原的吞噬细胞相遇。这种接触激活了T细胞,使其深深地渗透到CNS实质中,在此渗透的T细胞再次可以找到抗原,被进一步激活,并产生细胞因子,从而导致大量的免疫细胞募集和临床疾病。

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