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Molecular mechanism by which pioglitazone preserves pancreatic β-cells in obese diabetic mice: evidence for acute and chronic actions as a PPARγ agonist

机译:吡格列酮在肥胖糖尿病小鼠中保存胰岛β细胞的分子机制:作为PPARγ激动剂的急性和慢性作用的证据

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摘要

Pioglitazone preserves pancreatic β-cell morphology and function in diabetic animal models. In this study, we investigated the molecular mechanisms by which pioglitazone protects β-cells in diabetic db/db mice. In addition to the morphological analysis of the islets, gene expression profiles of the pancreatic islet were analyzed using laser capture microdissection and were compared with real-time RT-PCR of db/db and nondiabetic m/m mice treated with or without pioglitazone for 2 wk or 2 days. Pioglitazone treatment (2 wk) ameliorated dysmetabolism, increased islet insulin content, restored glucose-stimulated insulin secretion, and preserved β-cell mass in db/db mice but had no significant effects in m/m mice. Pioglitazone upregulated genes that promote cell differentiation/proliferation in diabetic and nondiabetic mice. In db/db mice, pioglitazone downregulated the apoptosis-promoting caspase-activated DNase gene and upregulated anti-apoptosis-related genes. The above-mentioned effects of pioglitazone treatment were also observed after 2 days of treatment. By contrast, the oxidative stress-promoting NADPH oxidase gene was downregulated, and antioxidative stress-related genes were upregulated, in db/db mice treated with pioglitazone for 2 wk, rather than 2 days. Morphometric results for proliferative cell number antigen and 4-hydroxy-2-noneal modified protein were consistent with the results of gene expression analysis. The present results strongly suggest that pioglitazone preserves β-cell mass in diabetic mice mostly by two ways; directly, by acceleration of cell differentiation/proliferation and suppression of apoptosis (acute effect); and indirectly, by deceleration of oxidative stress because of amelioration of the underlying metabolic disorder (chronic effect).
机译:吡格列酮在糖尿病动物模型中保留了胰腺β细胞的形态和功能。在这项研究中,我们研究了吡格列酮保护糖尿病db / db小鼠β细胞的分子机制。除了对胰岛进行形态学分析外,还使用激光捕获显微切割术分析了胰岛的基因表达谱,并将其与使用吡格列酮或未用吡格列酮治疗2的db / db和非糖尿病m / m小鼠的实时RT-PCR进行了比较。周或2天。吡格列酮治疗(2周)可改善db / db小鼠的代谢异常,胰岛胰岛素含量增加,葡萄糖刺激的胰岛素分泌恢复和β细胞质量,但对m / m小鼠无明显影响。吡格列酮上调了在糖尿病和非糖尿病小鼠中促进细胞分化/增殖的基因。在db / db小鼠中,吡格列酮下调促凋亡的胱天蛋白酶激活的DNase基因和上调的抗凋亡相关基因。治疗2天后也观察到了吡格列酮治疗的上述效果。相比之下,在吡格列酮治疗2周而不是2天的db / db小鼠中,促进氧化应激的NADPH氧化酶基因被下调,而与抗氧化应激相关的基因被上调。增殖细胞数抗原和4-羟基-2-壬基修饰蛋白的形态测定结果与基因表达分析的结果一致。本结果有力地表明吡格列酮主要通过两种方式在糖尿病小鼠中保留β细胞的质量。直接通过促进细胞分化/增殖和抑制细胞凋亡(急性作用);间接地通过降低潜在的新陈代谢紊乱来缓解氧化应激(慢性影响)。

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