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首页> 外文期刊>Medical science monitor : >Serum Malondialdehyde, Erythrocyte Glutathione Peroxidase, and Erythrocyte Superoxide Dismutase Levels in Women With Early Spontaneous Abortions Accompanied by Vaginal Bleeding
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Serum Malondialdehyde, Erythrocyte Glutathione Peroxidase, and Erythrocyte Superoxide Dismutase Levels in Women With Early Spontaneous Abortions Accompanied by Vaginal Bleeding

机译:伴有阴道流血的早期自然流产妇女的血清丙二醛,红细胞谷胱甘肽过氧化物酶和红细胞超氧化物歧化酶水平

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Background Malondialdehyde (MDA) is a marker of lipid peroxidation. Glutathione peroxidase (GPX) and superoxide dismutase (SOD) are the main enzymes responsible for the detoxification of superoxide anion. The aim was to assess whether serum MDA, erythrocyte GPX, and erythrocyte SOD levels altered during early spontaneous abortions presenting with vaginal bleeding. Material and Method A group of pregnant women at less than 8 weeks' gestation with spontaneous abortion and vaginal bleeding (n=23) and a control group of healthy pregnancies with similar characteristics (n=25) were included. Serum MDA levels, erythrocyte GPX, and SOD activities were determined and compared among the groups. Results Characteristics, including maternal age, parity, gestational age, complete blood count values, serum total protein, serum albumin, and serum lipid profile, were similar across the groups. Spontaneous abortion prior to 8 weeks of gestation was associated with increased mean serum MDA levels and decreased mean erythrocyte SOD activity. Erythrocyte GPX values did not differ among the groups. Conclusions Increased lipid peroxidation and inhibition of SOD activity might be involved in the termination of spontaneous abortions and expulsion of fetoplacental material out of the uterine cavity.
机译:背景丙二醛(MDA)是脂质过氧化的标志物。谷胱甘肽过氧化物酶(GPX)和超氧化物歧化酶(SOD)是负责超氧化物阴离子排毒的主要酶。目的是评估在出现阴道出血的早期自然流产期间,血清MDA,红细胞GPX和红细胞SOD水平是否改变。材料和方法包括一组妊娠少于8周且自然流产和阴道流血的孕妇(n = 23),以及健康对照组,其特征相似(n = 25)。确定并比较各组的血清MDA水平,红细胞GPX和SOD活性。结果各组的特征,包括产妇年龄,胎龄,胎龄,全血细胞计数值,血清总蛋白,血清白蛋白和血清脂质谱相似。妊娠8周前自然流产与平均血清MDA水平升高和平均红细胞SOD活性降低有关。各组之间的红细胞GPX值没有差异。结论脂质过氧化的增加和SOD活性的抑制可能与终止自然流产和将胎儿胎盘物质排出子宫腔有关。

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