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首页> 外文期刊>Iranian Journal of Reproductive Medicine >EARLY AND LATE EFFECTS OF IBUPROFEN ON MOUSE SPERM PARAMETERS, CHROMATIN CONDENSATION, AND DNA INTEGRITY IN MICE
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EARLY AND LATE EFFECTS OF IBUPROFEN ON MOUSE SPERM PARAMETERS, CHROMATIN CONDENSATION, AND DNA INTEGRITY IN MICE

机译:布洛芬对小鼠精子参数,染色质浓缩和DNA完整性的早期和晚期影响

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Background: There are few studies indicating the detrimental effects of ibuprofen on sperm fertility potential and DNA integrity.Objective: To determine the effects of Ibuprofen on sperm parameters, chromatin condensation and DNA integrity of mice.Materials and Methods: In this experimental study, 36 adult male mice with average weight 37 gr were divided into three groups, including control (group I, n=12), normal dosage of ibuprofen (group II, n=12) and high dosage (group III, n=12). Ibuprofen with different doses was dissolved in daily water of animals. After 35, 70 and 105 days, the cauda epididymis of mice were cut and incubated in Hama€?s F10 media. Sperm samples were analyzed for parameters (motility, morphology and count), DNA integrity (SCD test) and chromatin condensation (chromomycin A3 and Aniline blue staining).Results: After 35 days, in addition to above mentioned sperm parameters, all of the treated mice showed statistically significant increase in spermatozoa with immature chromatin (P0.05). However, after 70 days, the rate of sperm DNA fragmentation assessed by SCD was increased in group II (66.5?±0.7) and the percentage of immature spermatozoa (AB+and CMA3+) was higher in group III (77.5?±0.7 and 49.5?±6.3 respectively) than other groups. After 105 days, the AB+spermatozoa were increased in both normal dose and high dose groups.Conclusion: Ibuprofen may cause a significant reduction in sperm parameters and sperm chromatin/DNA integrity in mice. It should be noted that these deleterious effects are dose-dependent and can be seen in early and late stage of drug treatments.
机译:背景:很少有研究表明布洛芬对精子的受精能力和DNA完整性有不利影响。目的:确定布洛芬对小鼠精子参数,染色质浓缩和DNA完整性的影响材料和方法:在本实验研究中,36将平均体重为37 gr的成年雄性小鼠分为三组,包括对照组(I组,n = 12),正常剂量的布洛芬(II组,n = 12)和高剂量(III组,n = 12)。将不同剂量的布洛芬溶于动物的日常水中。 35、70和105天后,将小鼠的马尾附睾切开并在Hama F10培养基中孵育。分析精子样品的参数(活力,形态和计数),DNA完整性(SCD测试)和染色质浓缩(染色霉素A3和苯胺蓝染色)。结果:除上述精子参数外,经过35天,所有处理的染色质未成熟的小鼠精子数量有统计学显着性增加(P <0.05)。然而,在第70天后,II组中SCD评估的精子DNA断裂率增加(66.5±0.7),III组中未成熟精子的百分比(AB +和CMA3 +)较高(77.5±0.7和49.5)。分别为±±6.3)。 105天后,正常剂量组和高剂量组的AB +精子均升高。结论:布洛芬可能会导致小鼠精子参数和精子染色质/ DNA完整性的显着降低。应当指出,这些有害作用是剂量依赖性的,可以在药物治疗的早期和晚期看到。

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