首页> 外文期刊>Journal of diabetes research. >Transgenerational Glucose Intolerance of Tumor Necrosis Factor with Epigenetic Alteration in Rat Perirenal Adipose Tissue Induced by Intrauterine Hyperglycemia
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Transgenerational Glucose Intolerance of Tumor Necrosis Factor with Epigenetic Alteration in Rat Perirenal Adipose Tissue Induced by Intrauterine Hyperglycemia

机译:子宫内高血糖诱导的大鼠心包脂肪组织表观遗传改变的肿瘤坏死因子的代际葡萄糖耐量

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Changes in DNA methylation may play a role in the genetic mechanism underlying glucose intolerance in the offspring of mothers with diabetes. Here, we established a rat model of moderate intrauterine hyperglycemia induced by streptozotocin to detect glucose and lipid metabolism of first-generation (F1) and second-generation (F2) offspring. Moderate intrauterine hyperglycemia induced high body weight in F1 and F2 offspring of diabetic mothers. F1 offspring had impaired glucose tolerance and abnormal insulin level. Additionally, F1 and F2 offspring that were exposed to intrauterine hyperglycemia had impaired insulin secretion from the islets. The tumor necrosis factor (Tnf) gene was upregulated in perirenal adipose tissue from F1 offspring and relatively increased in F2 offspring. Both F1 and F2 offspring showed similar hypomethylation level at the 1952 site of Tnf. We confirmed that DNA methylation occurs in offspring exposed to intrauterine hyperglycemia and that the DNA methylation is intergenerational and inherited.
机译:DNA甲基化的变化可能在糖尿病母亲的后代中葡萄糖不耐症的遗传机制中起作用。在这里,我们建立了由链脲佐菌素诱导的中度子宫内高血糖的大鼠模型,以检测第一代(F1)和第二代(F2)后代的葡萄糖和脂质代谢。中度宫内高血糖症在糖尿病母亲的F1和F2后代中引起高体重。 F1后代的糖耐量受损和胰岛素水平异常。此外,暴露于子宫内高血糖的F1和F2后代损害了胰岛的胰岛素分泌。在F1后代的肾周脂肪组织中,肿瘤坏死因子(Tnf)基因上调,而在F2后代中则相对增加。 F1和F2的后代在Tnf的1952年位点均显示出相似的低甲基化水平。我们证实,DNA甲基化发生在暴露于宫内高血糖症的后代中,并且该DNA甲基化是世代相传的。

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