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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor alpha-chains (CD25). Breakdown of a single mechanism of self-tolerance causes various autoimmune diseases.
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Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor alpha-chains (CD25). Breakdown of a single mechanism of self-tolerance causes various autoimmune diseases.

机译:免疫自我耐受性由表达IL-2受体α链(CD25)的活化T细胞维持。自我耐受的单一机制的崩溃会导致多种自身免疫性疾病。

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摘要

Approximately 10% of peripheral CD4+ cells and less than 1% of CD8+ cells in normal unimmunized adult mice express the IL-2 receptor alpha-chain (CD25) molecules. When CD4+ cell suspensions prepared from BALB/c nu/+ mice lymph nodes and spleens were depleted of CD25+ cells by specific mAb and C, and then inoculated into BALB/c athymic nude (nuu) mice, all recipients spontaneously developed histologically and serologically evident autoimmune diseases (such as thyroiditis, gastritis, insulitis, sialoadenitis, adrenalitis, oophoritis, glomerulonephritis, and polyarthritis); some mice also developed graft-vs-host-like wasting disease. Reconstitution of CD4+CD25+ cells within a limited period after transfer of CD4+CD25- cells prevented these autoimmune developments in a dose-dependent fashion, whereas the reconstitution several days later, or inoculation of an equivalent dose of CD8+ cells, was far less efficient for the prevention. When nuu mice were transplanted with allogeneic skins or immunized withxenogeneic proteins at the time of CD25- cell inoculation, they showed significantly heightened immune responses to the skins or proteins, and reconstitution of CD4+CD25+ cells normalized the responses. Taken together, these results indicate that CD4+CD25+ cells contribute to maintaining self-tolerance by down-regulating immune response to self and non-self Ags in an Ag-nonspecific manner, presumably at the T cell activation stage; elimination/reduction of CD4+CD25+ cells relieves this general suppression, thereby not only enhancing immune responses to non-self Ags, but also eliciting autoimmune responses to certain self-Ags. Abnormality of this T cell-mediated mechanism of peripheral tolerance can be a possible cause of various autoimmune diseases.
机译:在正常的未免疫成年小鼠中,约10%的外周CD4 +细胞和少于1%的CD8 +细胞表达IL-2受体α链(CD25)分子。当从BALB / c nu / +小鼠制备的CD4 +细胞悬液通过特异性mAb和C耗尽CD25 +细胞的淋巴结和脾脏,然后接种到BALB / c无胸腺裸(nu / nu)小鼠中时,所有受体均在组织学和自发性上发育。血清学上明显的自身免疫性疾病(例如甲状腺炎,胃炎,胰岛素岛炎,唾液腺炎,肾上腺炎,卵泡炎,肾小球肾炎和多发性关节炎);一些小鼠还发展了移植物抗宿主病。 CD4 + CD25-细胞转移后的有限时间内,CD4 + CD25 +细胞的重建以剂量依赖的方式阻止了这些自身免疫的发展,而几天后的重建或接种等剂量的CD8 +细胞的效率大大降低。为预防。当在接种CD25-细胞时,将nu / nu小鼠移植了同种异体皮肤或用异种蛋白免疫后,它们对皮肤或蛋白质的免疫反应显着增强,而CD4 + CD25 +细胞的重建使响应正常化。综上所述,这些结果表明CD4 + CD25 +细胞通过以非Ag抗原的方式下调对自身和非自身Ags的免疫应答(大概是在T细胞活化阶段)有助于维持自身耐受性。消除/减少CD4 + CD25 +细胞可减轻这种普遍的抑制作用,从而不仅增强了对非自身Ags的免疫反应,还引发了对某些自身Ags的自身免疫反应。这种T细胞介导的外周耐受机制异常可能是各种自身免疫性疾病的可能原因。

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