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基质细胞衍生因子-1/CXCL12刺激NOD/LtJ T细胞对胰岛微血管内皮细胞黏附的化学排斥作用。

Stromal cell-derived factor-1/CXCL12 stimulates chemorepulsion of NOD/LtJ T-cell adhesion to islet microvascular endothelium.

作者信息

Sharp Christopher D, Huang Meng, Glawe John, Patrick D Ross, Pardue Sible, Barlow Shayne C, Kevil Christopher G

机构信息

Department of Pathology, Louisiana State University Health Sciences Center-Shreveport, 1501 Kings Hwy., Shreveport, LA 71130-3932, USA.

出版信息

Diabetes. 2008 Jan;57(1):102-12. doi: 10.2337/db07-0494. Epub 2007 Oct 1.

Abstract

OBJECTIVE

Diabetogenic T-cell recruitment into pancreatic islets facilitates beta-cell destruction during autoimmune diabetes, yet specific mechanisms governing this process are poorly understood. The chemokine stromal cell-derived factor-1 (SDF-1) controls T-cell recruitment, and genetic polymorphisms of SDF-1 are associated with early development of type 1 diabetes.

RESEARCH DESIGN AND METHODS

Here, we examined the role of SDF-1 regulation of diabetogenic T-cell adhesion to islet microvascular endothelium. Islet microvascular endothelial cell monolayers were activated with tumor necrosis factor-alpha (TNF-alpha), subsequently coated with varying concentrations of SDF-1 (1-100 ng/ml), and assayed for T-cell/endothelial cell interactions under physiological flow conditions.

RESULTS

TNF-alpha significantly increased NOD/LtJ T-cell adhesion, which was completely blocked by SDF-1 in a dose-dependent manner, revealing a novel chemorepulsive effect. Conversely, SDF-1 enhanced C57BL/6J T-cell adhesion to TNF-alpha-activated islet endothelium, demonstrating that SDF-1 augments normal T-cell adhesion. SDF-1 chemorepulsion of NOD/LtJ T-cell adhesion was completely reversed by blocking G(i)alpha-protein-coupled receptor activity with pertussis toxin. CXCR4 protein expression was significantly decreased in NOD/LtJ T-cells, and inhibition of CXCR4 activity significantly reversed SDF-1 chemorepulsive effects. Interestingly, SDF-1 treatment significantly abolished T-cell resistance to shear-mediated detachment without altering adhesion molecule expression, thus demonstrating decreased integrin affinity and avidity.

CONCLUSIONS

In this study, we have identified a previously unknown novel function of SDF-1 in negatively regulating NOD/LtJ diabetogenic T-cell adhesion, which may be important in regulating diabetogenic T-cell recruitment into islets.

摘要

目的

致糖尿病性T细胞募集到胰岛中会促进自身免疫性糖尿病期间的β细胞破坏,但对此过程的具体机制了解甚少。趋化因子基质细胞衍生因子-1(SDF-1)控制T细胞募集,且SDF-1的基因多态性与1型糖尿病的早期发展相关。

研究设计与方法

在此,我们研究了SDF-1对致糖尿病性T细胞与胰岛微血管内皮细胞黏附的调节作用。用肿瘤坏死因子-α(TNF-α)激活胰岛微血管内皮细胞单层,随后包被不同浓度的SDF-1(1-100 ng/ml),并在生理流动条件下检测T细胞/内皮细胞相互作用。

结果

TNF-α显著增加NOD/LtJ T细胞黏附,而SDF-1以剂量依赖性方式完全阻断这种黏附,揭示了一种新的化学排斥作用。相反,SDF-1增强C57BL/6J T细胞与TNF-α激活的胰岛内皮细胞的黏附,表明SDF-1增强正常T细胞黏附。用百日咳毒素阻断G(i)α蛋白偶联受体活性可完全逆转SDF-1对NOD/LtJ T细胞黏附的化学排斥作用。NOD/LtJ T细胞中CXCR4蛋白表达显著降低,抑制CXCR4活性可显著逆转SDF-1的化学排斥作用。有趣的是,SDF-1处理显著消除了T细胞对剪切介导的脱离的抗性,而不改变黏附分子表达,从而表明整合素亲和力和亲合力降低。

结论

在本研究中,我们发现了SDF-1在负向调节NOD/LtJ致糖尿病性T细胞黏附方面一个此前未知的新功能,这可能对调节致糖尿病性T细胞募集到胰岛中很重要。

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