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Progression to islet destruction in a cyclophosphamide-induced transgenic model: a microarray overview.

机译:环磷酰胺诱导的转基因模型中的胰岛破坏进展:微阵列概述。

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Type 1 diabetes appears to progress not as an uncontrolled autoimmune attack on the pancreatic islet beta-cells, but rather in a highly regulated manner. Leukocytic infiltration of the pancreatic islets by autoimmune cells, or insulitis, can persist for long periods of time before the terminal destruction of beta-cells. To gain insight on the final stage of diabetogenesis, we have studied progression to diabetes in a CD4(+) T-cell receptor transgenic variant of the NOD mouse model, in which diabetes can be synchronously induced within days by a single injection of cyclophosphamide. A time-course analysis of the gene expression profiles of purified islets was performed using microarrays. Contrary to expectations, changes in transcripts subsequent to drug treatment did not reflect a perturbation of gene expression in CD4(+) T-cells or a reduction in the expression of genes characteristic of regulatory T-cell populations. Instead, there was a marked decrease in transcripts of genes specific to B-cells, followed by an increase in transcripts of chemokine genes (cxcl1, cxcl5, and ccl7) and of other genes typical of the myelo-monocytic lineages. Interferon-gamma dominated the changes in gene expression to a striking degree, because close to one-half of the induced transcripts issued from interferon-gamma-regulated genes.
机译:1型糖尿病似乎并非以对胰岛β细胞的不受控制的自身免疫攻击而发展,而是以高度调控的方式发展。自身免疫细胞或胰岛炎对胰岛的白细胞浸润可以持续很长时间,直到β细胞最终被破坏。为了了解糖尿病形成的最终阶段,我们研究了NOD小鼠模型的CD4(+)T细胞受体转基因变异中的糖尿病进展,其中可以通过单次注射环磷酰胺在几天内同步诱导糖尿病。使用微阵列对纯化的胰岛的基因表达谱进行时程分析。与预期相反,药物治疗后的转录本变化未反映CD4(+)T细胞中基因表达的扰动或调节性T细胞群体的特征基因表达的减少。取而代之的是,B细胞特异基因的转录物显着减少,随后趋化因子基因(cxcl1,cxcl5和ccl7)和其他单核细胞系典型基因的转录物增加。干扰素-γ主导了基因表达的变化,因为干扰素-γ调控的基因发出的诱导转录物接近一半。

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