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首页> 外文期刊>Clinical & developmental immunology. >Thymic Self-Antigen Expression for the Design of a Negative/Tolerogenic Self-Vaccine against Type 1 Diabetes
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Thymic Self-Antigen Expression for the Design of a Negative/Tolerogenic Self-Vaccine against Type 1 Diabetes

机译:胸腺自身抗原表达设计针对1型糖尿病的阴性/致耐受性自身疫苗。

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Before being able to react against infectious non-self-antigens, the immune system has to be educated in the recognition and tolerance of neuroendocrine proteins, and this critical process essentially takes place in the thymus. The development of the autoimmune diabetogenic response results from a thymus dysfunction in programming central self-tolerance to pancreatic insulin-secreting islet β cells, leading to the breakdown of immune homeostasis with an enrichment of islet β cell reactive effector T cells and a deficiency of β cell-specific natural regulatory T cells (nTreg) in the peripheral T-lymphocyte repertoire. Insulin-like growth factor 2 (IGF-2) is the dominant member of the insulin family expressed during fetal life by the thymic epithelium under the control of the autoimmune regulator ( AIRE ) gene/protein. Based on the close homology and cross-tolerance between insulin, the primary T1D autoantigen, and IGF-2, the dominant self-antigen of the insulin family, a novel type of vaccination, so-called “negative/tolerogenic self-vaccination”, is currently developed for prevention and cure of T1D. If this approach were found to be effective for reprogramming immunological tolerance in T1D, it could pave the way for the design of negative self-vaccines against autoimmune endocrine diseases, as well as other organ-specific autoimmune diseases.
机译:在能够对传染性非自身抗原做出反应之前,必须对免疫系统进行认识和耐受神经内分泌蛋白的教育,而这一关键过程基本上发生在胸腺中。自身免疫性糖尿病形成的发展是由于胸腺功能失调导致了对胰腺分泌胰岛素的胰岛β细胞的中枢自我耐受性的编程,导致胰岛β细胞反应性效应T细胞的富集和β缺乏导致免疫稳态的破坏。外周T淋巴细胞库中的细胞特异性天然调节性T细胞(nTreg)。胰岛素样生长因子2(IGF-2)是在胎儿生命过程中在自身免疫调节剂(AIRE)基因/蛋白质的控制下由胸腺上皮表达的胰岛素家族的主要成员。基于胰岛素,主要的T1D自身抗原和胰岛素家族主要的自身抗原IGF-2之间的紧密同源性和交叉耐受性,这是一种新型的疫苗接种,即所谓的“阴性/致耐受性自身疫苗接种”,目前已开发用于预防和治疗T1D。如果发现这种方法可有效重编程T1D中的免疫耐受性,则可为针对自身免疫性内分泌疾病以及其他器官特异性自身免疫性疾病的阴性自身疫苗设计铺平道路。

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