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Maternal diabetes triggers DNA damage and DNA damage response in neurulation stage embryos through oxidative stress

机译:母体糖尿病会通过氧化应激在神经发育阶段的胚胎中引发DNA损伤和DNA损伤反应

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摘要

DNA damage and DNA damage response (DDR) in neurulation stage embryos under maternal diabetes conditions are not well understood. The purpose of this study was to investigate whether maternal diabetes and high glucose in vitro induce DNA damage and DDR in the developing embryo through oxidative stress. In vivo experiments were conducted by mating superoxide dismutase 1 (SOD1) transgenic male mice with wild-type (WT) female mice with or without diabetes. Embryonic day 8.75 (E8.75) embryos were tested for the DNA damage markers, phosphorylated histone H2A.X (p-H2A.X) and DDR signaling intermediates, including phosphorylated checkpoint 1 (p-Chk1), phosphorylated checkpoint 2 (p-Chk2), and p53. Levels of the same DNA damage markers and DDR signaling intermediates were also determined in the mouse C17.2 neural stem cell line. Maternal diabetes and high glucose in vitro significantly increased the levels of p-H2A.X. Levels of p-Chk1, p-Chk2, and p53, were elevated under both maternal diabetic and high glucose conditions. SOD1 overexpression blocked maternal diabetes-induced DNA damage and DDR in vivo. Tempol, a SOD1 mimetic, diminished high glucose-induced DNA damage and DDR in vitro. In conclusion, maternal diabetes and high glucose in vitro induce DNA damage and activates DDR through oxidative stress, which may contribute to the pathogenesis of diabetes-associated embryopathy.
机译:在母体糖尿病条件下,处于营养阶段的胚胎中的DNA损伤和DNA损伤反应(DDR)尚不清楚。这项研究的目的是调查母体糖尿病和体外高血糖是否通过氧化应激在发育中的胚胎中诱导DNA损伤和DDR。通过使超氧化物歧化酶1(SOD1)转基因雄性小鼠与患有或不患有糖尿病的野生型(WT)雌性小鼠交配来进行体内实验。测试了第8.75天(E8.75)胚胎的DNA损伤标志物,磷酸化的组蛋白H2A.X(p-H2A.X)和DDR信号传导中间体,包括磷酸化的检查点1(p-Chk1),磷酸化的检查点2(p- Chk2)和p53。在小鼠C17.2神经干细胞系中也测定了相同的DNA损伤标记和DDR信号转导中间体的水平。孕产妇糖尿病和体外高血糖显着增加了p-H2A.X的水平。在孕妇糖尿病和高血糖情况下,p-Chk1,p-Chk2和p53的水平均升高。 SOD1的过量表达在体内阻断了母亲糖尿病引起的DNA损伤和DDR。 Tempol是SOD1的模拟物,在体外减少了高糖诱导的DNA损伤和DDR。总之,孕产妇糖尿病和体外高血糖会诱导DNA损伤并通过氧化应激激活DDR,这可能是糖尿病相关胚胎病变的发病机制。

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