首页> 美国卫生研究院文献>The Journal of Experimental Medicine >Experimental autoimmune panencephalitis and uveoretinitis transferred to the Lewis rat by T lymphocytes specific for the S100 beta molecule a calcium binding protein of astroglia
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Experimental autoimmune panencephalitis and uveoretinitis transferred to the Lewis rat by T lymphocytes specific for the S100 beta molecule a calcium binding protein of astroglia

机译:实验性自身免疫性全脑炎和葡萄膜视网膜炎通过对S100 beta分子(星形胶质细胞的钙结合蛋白)具有特异性的T淋巴细胞转移到Lewis大鼠

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摘要

The pathogenic potential of autoimmune T cell responses to nonmyelin autoantigens was investigated in the Lewis rat using the astrocyte- derived calcium binding protein S100 beta, as a model nonmyelin autoantigen. The Lewis rat mounts a vigorous RT1B1 (major histocompatibility complex class II) restricted autoimmune response to an immunodominant S100 beta epitope (amino acid residues 76-91). The adoptive transfer of S100 beta-specific T cell lines induced a severe inflammatory response in the nervous system, but only minimal neurological dysfunction in naive syngeneic recipients. The inability of S100 beta-specific T cell transfer to induce severe disease was associated with a decreased recruitment of ED1+ macrophages into the central nervous system (CNS) in comparison with that seen in severe experimental autoimmune encephalomyelitis (EAE) induced by the adoptive transfer of myelin basic protein (MBP)-specific T line cells. Moreover, unlike encephalitogenic MBP-specific T cell lines, S100 beta-specific T cell lines exhibited no cytotoxic activity in vitro. Histopathological analysis also revealed striking differences in the distribution of inflammatory lesions in MBP- and S100 beta-specific T cell-mediated disease. In contrast to the MBP paradigm, S100 beta-specific T cell transfer induces intense inflammation not only in the spinal cord, but throughout the entire CNS and also in the uvea and retina of the eye. In view of the distribution of lesions throughout the grey and white matter of the CNS we propose to term this new model experimental autoimmune panencephalomyelitis (EAP) to differentiate it from EAE. These experiments demonstrate for the first time that nonmyelin CNS autoantigens can initiate a pathogenic autoimmune T cell response, although the nature of the target autoantigen profoundly influences the clinical and histopathological characteristics of the resulting autoimmune disease. This is not simply a consequence of the distribution of the autoantigen, as both MBP and S100 beta are coexpressed in many areas of the CNS, but reflects differences in the capacity of different regions of the CNS to process and present specific autoantigens. This new model of T cell-mediated autoimmune CNS disease exhibits a number of similarities to multiple sclerosis (MS), such as its mild clinical course and the involvement of areas of the brain and eye, which are absent in myelin-mediated models of EAE. Nonmyelin autoantigens may therefore play an unexpectedly important role in the immunopathogenesis of inflammatory diseases of the CNS.
机译:在Lewis大鼠中,使用星形胶质细胞衍生的钙结合蛋白S100 beta作为模型非髓鞘自身抗原,研究了自身免疫性T细胞对非髓鞘自身抗原的致病潜力。 Lewis大鼠对有免疫力的S100β表位(氨基酸残基76-91)具有强烈的RT1B1(主要组织相容性复合体II类)限制性自身免疫反应。 S100β特异性T细胞系的过继转移在神经系统中引起严重的炎症反应,但在幼稚的同基因受体中仅引起最小的神经功能障碍。与通过过继转移引起的严重实验性自身免疫性脑脊髓炎(EAE)相比,S100β特异性T细胞转移无法诱导严重疾病与ED1 +巨噬细胞向中枢神经系统(CNS)募集的减少有关。髓磷脂碱性蛋白(MBP)特异性T线细胞。此外,与致脑病的MBP特异性T细胞系不同,S100β特异性T细胞系在体外没有细胞毒性。组织病理学分析还揭示了MBP和S100β特异性T细胞介导的疾病中炎症损伤分布的显着差异。与MBP范例相反,S100β特异性T细胞转移不仅在脊髓中,而且在整个CNS中以及在眼的葡萄膜和视网膜中均引起强烈的炎症。考虑到整个中枢神经系统灰白质中病变的分布,我们建议将该新模型称为实验性自身免疫性全脑脊髓炎(EAP),以将其与EAE区别开来。这些实验首次证明了非髓磷脂中枢神经系统自身抗原可以启动病原性自身免疫性T细胞反应,尽管靶自身抗原的性质深刻影响了所产生的自身免疫性疾病的临床和组织病理学特征。这不仅是自身抗原分布的结果,因为MBP和S100 beta在CNS的许多区域都共同表达,而且反映了CNS不同区域处理和呈现特定自身抗原能力的差异。这种新的T细胞介导的自身免疫性中枢神经系统疾病模型表现出与多发性硬化症(MS)的许多相似之处,例如其轻度的临床病程以及大脑和眼睛区域受累,而在髓磷脂介导的EAE模型中却没有。因此,非髓磷脂自身抗原可能在中枢神经系统炎性疾病的免疫发病机制中发挥出乎意料的重要作用。

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