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首页> 外文期刊>Biochemical and Biophysical Research Communications >Combined insulin B : 9-23 self-peptide and polyinosinic-polycytidylic acid accelerate insulitis but inhibit development of diabetes by increasing the proportion of CD4(+)Foxp3(+) regulatory T cells in the islets in non-obese diabetic mice
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Combined insulin B : 9-23 self-peptide and polyinosinic-polycytidylic acid accelerate insulitis but inhibit development of diabetes by increasing the proportion of CD4(+)Foxp3(+) regulatory T cells in the islets in non-obese diabetic mice

机译:胰岛素B组合:9-23自肽和多肌苷-聚胞苷酸可加速胰岛素抵抗,但可通过增加非肥胖糖尿病小鼠胰岛中CD4(+)Foxp3(+)调节性T细胞的比例来抑制糖尿病的发展

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摘要

Insulin peptide B:9-23 is a major autoantigen in type 1 diabetes. Combined treatment with B:9-23 peptide and polyinosinic-polycytidylic acid (poly I:C), but neither alone, induce insulitis in normal BALB/c mice. In contrast, the combined treatment accelerated insulitis, but prevented diabetes in NOD mice. Our immunofluorescence study with anti-CD4/anti-Foxp3 revealed that the proportion of Foxp3 positive CD4(+)CD25(+) regulatory T cells (Tregs) was elevated in the islets of NOD mice treated with B:923 peptide and poly I:C, as compared to non-treated mice. Depletion of Tregs by anti-CD25 antibody hastened spontaneous development of diabetes in non-treated NOD mice, and abolished the protective effect of the combined treatment and conversely accelerated the onset of diabetes in the treated mice. These results indicate that poly I:C combined with B:9-23 peptide promotes infiltration of both pathogenic T cells and predominantly Tregs into the islets, thereby inhibiting progression from insulitis to overt diabetes in NOD mice. (c) 2008 Elsevier Inc. All rights reserved.
机译:胰岛素肽B:9-23是1型糖尿病的主要自身抗原。 B:9-23肽与多肌苷酸-聚胞苷酸(poly I:C)的联合治疗,但都不单独治疗,可在正常BALB / c小鼠中诱发岛炎。相比之下,联合治疗加速了岛炎,但预防了NOD小鼠的糖尿病。我们用抗CD4 /抗Foxp3进行的免疫荧光研究表明,在用B:923肽和poly I处理的NOD小鼠的胰岛中,Foxp3阳性CD4(+)CD25(+)调节性T细胞(Tregs)的比例增加了:与未治疗的小鼠相比,C。抗CD25抗体对Treg的耗竭加速了未治疗的NOD小鼠中糖尿病的自发发展,并且取消了联合治疗的保护作用,反过来加速了所治疗小鼠中糖尿病的发作。这些结果表明,聚I:C与B:9-23肽结合可促进病原性T细胞和主要的Treg浸润到胰岛中,从而抑制NOD小鼠从胰岛炎发展为明显的糖尿病。 (c)2008 Elsevier Inc.保留所有权利。

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