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Seminal malondialdehyde concentration but not glutathione peroxidase activity is negatively correlated with seminal concentration and motility

机译:精子丙二醛浓度而不是谷胱甘肽过氧化物酶活性与精子浓度和运动力呈负相关

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摘要

>Objectives: Reactive oxygen species (ROS) induced lipid peroxidation is associated with sperm function. Malondialdehyde (MDA) concentration and glutathione peroxidase (GPx) activity represent the lipid peroxidation and spermicidal antioxidant, respectively. We aimed to evaluate the relationship of MDA and GPx levels with sperm parameters.>Patients and methods: Specimens were divided into two groups: group 1. normospermia (n=20); group 2. oligoasthenospermia (n=31). Seminal MDA concentration was measured by thiobarbituric acid reaction method. Seminal GPx activity was measured by oxidation of reduced nicotinamide-adenine dinucleotide. Seminal MDA levels and GPx activities in both groups were compared.>Results: MDA concentrations in both groups were significantly different (1.52 ± 0.75 vs. 2.25 ± 0.88 nM, p = 0.0021). GPx activities in both groups were non-significantly different (0.48 ± 0.11 vs. 0.47 ± 0.12 U/ml). MDA levels were negatively correlated with the sperm motility (MDA = -0.014 x motility + 2.62, p =0.017) and concentration (MDA = -0.0045 x concentration + 2.23, p = 0.0166). GPx activities were positively but non-significantly correlated with the sperm concentration and sperm motility.>Conclusions: Seminal MDA concentrations are negatively correlated with sperm concentration and motility, which might provide a simple and useful tool in predicting sperm parameters. GPx activity is non-significantly correlated with the seminal quality. Roles of seminal MDA upon spermatogenesis merits further surveys.
机译:>目标:活性氧(ROS)诱导的脂质过氧化与精子功能相关。丙二醛(MDA)浓度和谷胱甘肽过氧化物酶(GPx)活性分别代表脂质过氧化和杀精子剂抗氧化剂。我们的目的是评估MDA和GPx水平与精子参数之间的关系。>患者和方法:标本分为两组:第1组:正常精子症(n = 20);第2组。组2。少精子症(n = 31)。通过硫代巴比妥酸反应法测定精氨酸的MDA浓度。通过还原的烟酰胺-腺嘌呤二核苷酸的氧化来测量精氨酸GPx活性。比较两组的精子MDA水平和GPx活性。>结果:两组的MDA浓度显着不同(1.52±0.75 vs. 2.25±0.88 nM,p = 0.0021)。两组的GPx活性无显着差异(0.48±0.11 vs. 0.47±0.12 U / ml)。 MDA水平与精子活力(MDA = -0.014 x活力+ 2.62,p = 0.017)和浓度(MDA = -0.0045 x浓度+ 2.23,p = 0.0166)呈负相关。 GPx活性与精子浓度和精子活力呈正相关,但无显着相关。>结论:原始MDA浓度与精子浓度和精子活力呈负相关,这可能为预测精子参数提供了一种简单有用的工具。 GPx活性与精液质量无显着相关性。精子MDA在精子发生中的作用值得进一步研究。

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