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Both central and peripheral tolerance mechanisms play roles in diabetes prevention in NOD-E transgenic mice.

机译:中枢和外周耐受机制均在NOD-E转基因小鼠的糖尿病预防中发挥作用。

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摘要

The non-obese diabetic (NOD) mouse spontaneously develops diabetes and is a widely used model of Type 1 Diabetes in humans. The major histocompatibility complex class II plays an important role in governing disease susceptibility in NOD mice. NOD mice express a rare I-A allele, I-A(g7), and do not express I-E molecules. Interestingly, transgenic NOD mice which express I-E (NOD-E) fail to develop diabetes although, the protective mechanism(s) are incompletely understood. Initially, we explored whether diabetes prevention was due to deletion of autoreactive T cells. Through adoptive transfer with depletion of CD25+ T cells, we demonstrated that autoreactive T cells were present in the periphery of NOD-E mice. Although, BDC2.5NOD T cells proliferated less in the pancreatic lymph nodes of NOD-E mice, we found that they transferred disease with a similar kinetic in NOD.scid and NOD-E.scid recipients suggesting that there was little difference in peripheral antigen presentation in NOD-E mice. We also found that there were no proportional or functional differences between NOD and NOD-E T regs. Our studies indicate that autoreactive T cells are present within the periphery of NOD-E mice but that these cells are present in low numbers suggesting that peripheral tolerogenic mechanisms are able to prevent them from inducing diabetes.
机译:非肥胖型糖尿病(NOD)小鼠自发发展为糖尿病,是人类广泛使用的1型糖尿病模型。 II型主要组织相容性复合物在控制NOD小鼠的疾病易感性中起重要作用。 NOD小鼠表达罕见的I-A等位基因I-A(g7),并且不表达I-E分子。有趣的是,表达I-E(NOD-E)的转基因NOD小鼠虽然没有完全了解其保护机制,但仍未发展为糖尿病。最初,我们探讨了糖尿病的预防是否归因于自身反应性T细胞的缺失。通过与CD25 + T细胞耗竭的过继转移,我们证明了NOD-E小鼠外周存在自身反应性T细胞。尽管BDC2.5NOD T细胞在NOD-E小鼠的胰腺淋巴结中增殖较少,但我们发现它们在NOD.scid和NOD-E.scid受体中以相似的动力学转移疾病,这表明外周抗原几乎没有差异在NOD-E小鼠中出现。我们还发现,NOD和NOD-E T reg之间没有比例或功能上的差异。我们的研究表明,自发反应性T细胞存在于NOD-E小鼠的外周,但是这些细胞的数量很少,这表明外周致耐受机制能够阻止它们诱发糖尿病。

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