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Fertilizing potential of ejaculated human spermatozoa during in vitro semen bacterial infection

机译:体外精液细菌感染过程中射精后人精子的受精潜力

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摘要

Objective To assess the in vitro effect of three bacterial isolates (Escherichia coli, serotype O75:HNT, Staphylococcus haemolyticus, and Bacteroides ureolyticus) and/or leukocytes on sperm motility, subcellular changes in sperm plasma membranes, and sperm fertilizing potential. Design An in vitro model of semen bacterial infection. Setting Basic research laboratory. Patient(s) Healthy normozoospermic volunteers and healthy blood donors. Intervention(s) None. Main Outcome Measure(s) Sperm plasma membrane stability was evaluated with a LIVE/DEAD Sperm Viability Kit and with the merocyanine 540 (M540) test both performed using flow cytometry. An oxiSelect TBARS Assay Kit was used for quantitative measurement of malondialdehyde content. Functional ability of spermatozoa was assessed by hypo-osmotic swelling (HOS) test and sperm penetration assay (SPA). Result(s) The incubation of sperm with bacteria and/or leukocytes was associated with the reduction of their fertilizing potential demonstrated in both the HOS test and SPA, and this effect can be considered as a natural consequence of diminished motility and sperm membrane injury of lipid bilayers. Bacteroides ureolyticus demonstrated the most significant detrimental effect on sperm structure and function. Conclusion(s) Sperm motility and lipid sperm membrane status might be the earliest and the most sensitive indicators of sperm damage with negative consequences for male factor fertility, which can be attributed to both bacteria and leukocytes action.
机译:目的评估三种细菌分离株(大肠杆菌,O75血清型:HNT,溶血性葡萄球菌和溶血性拟杆菌)和/或白细胞对精子活力,精子质膜亚细胞变化和精子受精能力的体外作用。设计精液细菌感染的体外模型。设置基础研究实验室。患者健康的正常精子志愿者和健康的献血者。干预措施无。主要结果测量使用LIVE / DEAD精子生存力试剂盒和使用花菁540(M540)进行的精子质膜稳定性评估,均使用流式细胞仪进行。 oxiSelect TBARS检测试剂盒用于定量测定丙二醛含量。通过低渗溶胀(HOS)测试和精子渗透测定(SPA)评估精子的功能能力。结果精子与细菌和/或白细胞的温育与其在HOS试验和SPA中均显示出的受精能力降低有关,这种作用可被认为是降低精子活力和精子膜损伤的自然结果。脂质双层。溶尿细菌显示出对精子结构和功能的最显着有害作用。结论精子活力和脂质精子膜状态可能是精子损伤的最早和最敏感的指标,对男性因子的生育能力具有负面影响,这可能归因于细菌和白细胞的作用。

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