铂纳米颗粒对兔精子活力和活力的影响

Lucia Dianová, Filip Tirpák, Marko Halo Jr., Michal Lenický, T. Slanina, S. Roychoudhury, P. Massányi
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引用次数: 0

摘要

如今,男性生殖健康已成为一个经常被问到的问题。精子对环境中的各种物质都非常敏感。随着纳米颗粒在技术和医学上的广泛应用,纳米颗粒也可能成为潜在的环境污染物。铂纳米颗粒越来越多地用于医学,主要用于癌症治疗。本研究旨在探讨铂纳米颗粒对兔体外精子活力和活力的影响。兔精液(n = 5)用不同浓度的铂纳米颗粒溶液培养(对照组或CON = 0.9% NaCl;实验组D = 62.5µg/ml, E = 31.25µg/ml, F = 15.63µg/ml, g = 7.81µg/ml, H = 3.91µg/ml, I = 1.95µg/ml, J = 0.98µg/ml, K = 0.49µg/ml, L = 0.24µg/ml,时间间隔分别为0、2、4、6、9、24 H。采用计算机辅助精子分析仪(CASA)技术对选定的参数进行分析——精子的总运动力(MOT, %)、渐进式运动力(PRO, %)、曲线速度(VCL,µm/s)和活力(代谢活性),采用MTT试验。铂纳米颗粒在几乎所有评估的时间间隔内都对精子运动、渐进运动和曲线速度产生负面影响,主要是在最高使用浓度下。初始时间间隔显示MOT和PRO有轻微但有统计学意义的增加。根据本实验结果,精子活力未受显著影响。结果表明,铂纳米颗粒的作用具有时间和剂量依赖性。然而,需要进一步分析才能得出完整的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of platinum nanoparticles on rabbit spermatozoa motility and viability
Male reproductive health is becoming a frequently asked question nowadays. Spermatozoa can be highly sensitive to various substances found in the environment. With the accretive usage of nanoparticles in technology and medicine, nanoparticles may also pose as potential environmental contaminants. Platinum nanoparticles are increasingly used in medicine, mainly for cancer treatment. The aim of this study was to investigate the effect of platinum nanoparticles on the motility and viability of rabbit spermatozoa in-vitro. Rabbit semen (n = 5) was cultured with solutions with different concentrations of platinum nanoparticles (control group or CON = only 0.9% NaCl; experimental groups D = 62.5 µg/ml, E = 31.25 µg/ml, F = 15.63 µg/ml, G = 7.81 µg/ml, H = 3.91 µg/ml, I = 1.95 µg/ml, J = 0.98 µg/ml, K = 0.49 µg/ml, and L = 0.24 µg/ml platinum nanoparticles) at time intervals of 0, 2, 4, 6, 9 and 24 hours. Selected parameters were analysed by computer-assisted sperm analyzer (CASA) technology – total motility (MOT, %), progressive motility (PRO, %), curvilinear velocity (VCL, µm/s) and viability (metabolic activity) of spermatozoa using the MTT test. Platinum nanoparticles negatively affected spermatozoa motility, progressive motility, and curvilinear velocity at almost all assessed time intervals, mainly at the highest used concentrations. The initial time interval shows a slight but statistically significant increase in MOT and PRO. Spermatozoa viability was not significantly affected, according to the results of this experiment. It was shown that the effect of platinum nanoparticles is time and dose-dependent. However, further analyses are needed to draw complete conclusions.
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