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Microparticles bearing encephalitogenic peptides induce T-cell tolerance and ameliorate experimental autoimmune encephalomyelitis

机译:微粒轴承致脑炎的肽诱导的T-细胞耐受性和改善实验性自身免疫性脑脊髓炎

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摘要

Aberrant T-cell activation underlies many autoimmune disorders, yet most attempts to induce T-cell tolerance have failed. Building on previous strategies for tolerance induction that exploited natural mechanisms for clearing apoptotic debris, we show that antigen-decorated microparticles (500-nm diameter) induce long-term T-cell tolerance in mice with relapsing experimental autoimmune encephalomyelitis. Specifically, intravenous infusion of either polystyrene or biodegradable poly(lactide-co-glycolide) microparticles bearing encephalitogenic peptides prevents the onset and modifies the course of the disease. These beneficial effects require microparticle uptake by marginal zone macrophages expressing the scavenger receptor MARCO and are mediated in part by the activity of regulatory T cells, abortive T-cell activation and T-cell anergy. Together these data highlight the potential for using microparticles to target natural apoptotic clearance pathways to inactivate pathogenic T cells and halt the disease process in autoimmunity.
机译:T细胞活化异常是许多自身免疫性疾病的基础,但大多数诱导T细胞耐受性的尝试均以失败告终。建立在以前的利用诱导清除凋亡碎片的自然机制的耐受诱导策略上,我们显示抗原修饰的微粒(直径500 nm)在复发性实验性自身免疫性脑脊髓炎小鼠中诱导长期T细胞耐受。具体而言,静脉内输注带有致脑病原肽的聚苯乙烯或可生物降解的聚(丙交酯-乙交酯)微粒可防止疾病发作并改变病程。这些有益作用需要表达清除剂受体MARCO的边缘区巨噬细胞摄取微粒,并且部分地由调节性T细胞的活性,流产的T细胞活化和T细胞无能介导。这些数据共同强调了使用微粒靶向自然凋亡清除途径以灭活病原性T细胞并中止自身免疫性疾病过程的潜力。

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