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通过靶向OX40/OX40配体相互作用在晚期NOD小鼠中预防糖尿病

Prevention of diabetes in NOD mice at a late stage by targeting OX40/OX40 ligand interactions.

作者信息

Pakala Syamasundar V, Bansal-Pakala Pratima, Halteman Beth S, Croft Michael

机构信息

Division of Molecular Immunology, La Jolla Institute for Allergy and Immunology, San Diego, CA 92121, USA.

出版信息

Eur J Immunol. 2004 Nov;34(11):3039-46. doi: 10.1002/eji.200425141.

Abstract

Autoreactive T cells play a major role in the development of insulin-dependent diabetes mellitus, suggesting that costimulatory molecules that regulate T cell responses might be essential for disease progression. In NOD mice, CD28/B7 and CD40/CD40 ligand (L) interactions control the onset of diabetes from 2 to 4 weeks of age, but blocking these molecules has little effect after this time. Hence, it is possible that other ligand/receptor pairs control a later phase of disease. We now show that OX40 is expressed on CD4 and CD8 T cells several weeks prior to islet destruction, which is initiated around weeks 12-14, and that OX40L is present on dendritic cells in both secondary lymphoid organs and the pancreas from 11 to 13 weeks of age. Blocking OX40L at 6, 9, or 15 weeks after birth had little effect on disease; however, inhibiting OX40/OX40L interactions at week 12, or continuous treatment from week 12 onwards, significantly reduced the incidence of diabetes. Histological examination showed that islet destruction was prevented and insulitis reduced by targeting OX40L. These studies show that OX40/OX40L interactions form a late checkpoint in diabetes development and suggest that these molecules are realistic targets for therapeutic intervention.

摘要

自身反应性T细胞在胰岛素依赖型糖尿病的发展中起主要作用,这表明调节T细胞反应的共刺激分子可能对疾病进展至关重要。在非肥胖糖尿病(NOD)小鼠中,CD28/B7和CD40/CD40配体(L)的相互作用控制着2至4周龄时糖尿病的发病,但在此之后阻断这些分子几乎没有效果。因此,可能有其他配体/受体对控制疾病的后期阶段。我们现在发现,在胰岛破坏前几周,OX40在CD4和CD8 T细胞上表达,胰岛破坏大约在12 - 14周开始,并且在11至13周龄时,OX40L存在于二级淋巴器官和胰腺中的树突状细胞上。在出生后6、9或15周阻断OX40L对疾病几乎没有影响;然而,在第12周抑制OX40/OX40L的相互作用,或从第12周开始持续治疗,可显著降低糖尿病的发病率。组织学检查表明,靶向OX40L可预防胰岛破坏并减轻胰岛炎。这些研究表明,OX40/OX40L的相互作用在糖尿病发展中形成了一个后期检查点,并表明这些分子是治疗干预的现实靶点。

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