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Effects of biovar i and biovar II of ureaplasma urealyticum on sperm parameters, lipid peroxidation, and deoxyribonucleic acid damage in male infertility

机译:解脲脲原体的biovar i和biovar II对男性不育症精子参数,脂质过氧化和脱氧核糖核酸损伤的影响

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Objective To reveal the impact of 2 biovars of Ureaplasma urealyticum on the sperm of infertile men by producing reactive oxygen species (ROS). Methods A total of 223 infertile and 146 fertile men were recruited into the study. Standard semen analysis was performed. Culturing and real-time polymerase chain reaction were used to identify biovars of U urealyticum in the semen. Semen ROS, malondialdehyde, and total superoxide dismutase levels were measured. Sperm nuclear deoxyribonucleic acid (DNA) damage was assessed of by sperm chromatin structure assay and single-cell gel electrophoresis. Results Biovar II infection was more frequent in infertile men (P =.036). When compared with uninfected individuals, biovar II-infected men displayed decreases in spermatozoa concentration (P =.041); biovar II and mix-infected men displayed decreases in total motility (P =.015; P =.014, respectively) and increase in leukocyte counts (P =.004; P =.003, respectively). Except for total superoxide dismutase level, indicators for peroxide including ROS level, malondialdehyde level, DNA fragmentation index and high DNA stainable in sperm chromatin structure assay, and tail moment in single-cell gel electrophoresis exhibited the significant differences between both infected groups vs the uninfected group (P <.05). Conclusion Compared with biovar I, biovar II is more likely to cause male infertility. Increased leukocyte counts, ROS level elevation, and subsequent spermatozoa membrane and DNA damage may be involved in this pathogenesis.
机译:目的通过产生活性氧(ROS)来揭示2种解脲脲原体生物变种对不育男性精子的影响。方法招募了223名不育和146名可育男性。进行标准精液分析。培养和实时聚合酶链反应用于确定精液中解脲脲原体的生物变种。测定精液中的ROS,丙二醛和总超氧化物歧化酶水平。通过精子染色质结构测定和单细胞凝胶电泳评估了精子核脱氧核糖核酸(DNA)的损伤。结果在不育男性中,Biovar II感染更为常见(P = .036)。与未感染的个体相比,感染了biovar II的男性精子浓度降低(P = .041); biovar II型和混合感染型男性表现出总运动能力降低(分别为P = .015; P = .014)和白细胞计数增加(分别为P = .004; P = .003)。除总超氧化物歧化酶水平外,精子染色质结构测定中过氧化物的指标包括ROS水平,丙二醛水平,DNA片段化指数和高DNA可染色性,以及单细胞凝胶电泳中的尾矩表现出两个感染组与未感染组之间的显着差异。组(P <.05)。结论与Biovar I相比,biovar II更可能引起男性不育。这种发病机制可能涉及白细胞计数增加,ROS水平升高以及随后的精子膜和DNA损伤。

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