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Role of genetic factors in organ-specific autoimmune diseases induced by manipulating the thymus or T cells, and not self-antigens

机译:遗传因素在操纵胸腺或T细胞而非自身抗原诱发的器官特异性自身免疫疾病中的作用

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There are accumulating demonstrations that manipulation of the T-cell immune system, such as elimination of a particular T-cell subpopulation from the periphery or removal of the thymus during a critical neonatal period, can elicit activation/expansion of pathogenic self-reactive T cells from the remaining T cells and produce a wide spectrum of organ-specific autoimmune diseases in otherwise normal mice or rats. The genetic makeup of the hosts appears to play a key role in determining which self-reactive T-cell clones are prone to be activated under such circumstances, since a comparable degree of the immunologic abnormality elicits autoimmune disease in different spectrums of organs, with different incidences and severities, depending on the mouse or rat strains used. These findings indicate that one aspect of natural immunologic self-tolerance is maintained by a T cell-mediated control of potentially pathogenic self-reactive T cells in the periphery, and that defective control, caused by environmental insults or genetic abnormalities, suffices to cause autoimmune disease, furthermore, in the presence of such a T-cell abnormality, host genetic factors including MHC and non-MHC genes may determine the specificity and intensity of the autoimmune responses, and consequently the phenotype of the autoimmune disease.
机译:越来越多的证据表明,在新生儿危重时期,操纵T细胞免疫系统(例如从外周消除特定的T细胞亚群或去除胸腺)可以引起病原性自反应性T细胞活化/扩增会从其余的T细胞中分离出来,并在其他正常小鼠或大鼠中产生多种器官特异性自身免疫性疾病。在这种情况下,宿主的遗传组成似乎在确定哪些自我反应性T细胞克隆易于激活中起关键作用,因为相当程度的免疫异常会在不同器官,不同器官引起自身免疫性疾病发病率和严重程度,取决于所用的小鼠或大鼠品系。这些发现表明,自然免疫学自身耐受性的一个方面是通过T细胞介导的外周潜在致病性自身反应性T细胞的控制来维持的,并且由环境侵害或遗传异常引起的缺陷控制足以引起自身免疫。此外,在患有这种T细胞异常的疾病中,包括MHC和非MHC基因在内的宿主遗传因素可以决定自身免疫反应的特异性和强度,并因此决定自身免疫疾病的表型。

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