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用热休克蛋白60肽p277治疗非肥胖糖尿病(NOD)小鼠的自身免疫性糖尿病和胰岛炎。

Treatment of autoimmune diabetes and insulitis in NOD mice with heat shock protein 60 peptide p277.

作者信息

Elias D, Cohen I R

机构信息

Department of Cell Biology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Diabetes. 1995 Sep;44(9):1132-8. doi: 10.2337/diab.44.9.1132.

Abstract

We recently showed that a peptide of the M(r) 60,000 heat shock protein molecule, designated peptide p277, is a target of T-cells in autoimmune diabetes in NOD mice. Indeed, the p277 peptide could be used as a therapeutic agent to arrest the autoimmune process even after it was far advanced. The present study was done to document the effects of p277 therapy on inflammation of the islets and on T-cell responsiveness to p277. Groups of female NOD mice of various ages up to 17 weeks were treated with a single inoculation of p277 given before or after the onset of overt hyperglycemia. We now report that fragments of p277 can affect diabetes but that optimal therapy requires the whole peptide. The positive response to p277 was dependent on administration of a threshold dose of peptide. Therapy was accompanied by the regression of intra-islet inflammation and the reappearance of histologically normal islets. Successful peptide therapy was associated with downregulation of T-cell immunity to p277. Adoptive transfer experiments demonstrated that the spleen cells of p277-treated mice were no longer diabetogenic and also could suppress the diabetogenic potential of cotransferred spleen cells of untreated female NOD mice. These results indicate that specific treatment of diabetes with a defined peptide can reprogram the autoimmune response.

摘要

我们最近发现,分子量为60,000的热休克蛋白分子的一种肽,命名为肽p277,是NOD小鼠自身免疫性糖尿病中T细胞的靶标。实际上,即使在自身免疫过程已经进展到很严重的阶段后,p277肽仍可作为一种治疗剂来阻止该过程。本研究旨在记录p277治疗对胰岛炎症以及T细胞对p277反应性的影响。对17周龄以下不同年龄的雌性NOD小鼠组,在明显高血糖发作之前或之后单次接种p277进行治疗。我们现在报告,p277的片段可以影响糖尿病,但最佳治疗需要完整的肽。对p277的阳性反应取决于给予阈值剂量的肽。治疗伴随着胰岛内炎症的消退以及组织学上正常胰岛的重新出现。成功的肽治疗与T细胞对p277免疫反应的下调有关。过继转移实验表明,经p277治疗的小鼠的脾细胞不再具有致糖尿病性,并且还可以抑制未治疗的雌性NOD小鼠共转移的脾细胞的致糖尿病潜力。这些结果表明,用特定的肽对糖尿病进行特异性治疗可以重新编程自身免疫反应。

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