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Evaluation of Lasting Effects of Heat Stress on Sperm Profile and Oxidative Status of Ram Semen and Epididymal Sperm

机译:评估热应激对公羊精液和附睾精子氧化状况的持久影响

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摘要

Higher temperatures lead to an increase of testicular metabolism that results in spermatic damage. Oxidative stress is the main factor responsible for testicular damage caused by heat stress. The aim of this study was to evaluate lasting effects of heat stress on ejaculated sperm and immediate or long-term effects of heat stress on epididymal sperm. We observed decrease in motility and mass motility of ejaculated sperm, as well as an increase in the percentages of sperm showing major and minor defects, damaged plasma and acrosome membranes, and a decrease in the percentage of sperm with high mitochondrial membrane potential in the treated group until one spermatic cycle. An increased enzymatic activity of glutathione peroxidase and an increase of stressed cells were observed in ejaculated sperm of the treated group. A decrease in the percentage of epididymal sperm with high mitochondrial membrane potential was observed in the treated group. However, when comparing immediate and long-term effects, we observed an increase in the percentage of sperm with low mitochondrial membrane potential. In conclusion, testicular heat stress induced oxidative stress that led to rescuable alterations after one spermatic cycle in ejaculated sperm and also after 30 days in epididymal sperm.
机译:较高的温度导致睾丸代谢增加,从而导致精子受损。氧化应激是由热应激引起睾丸损伤的主要因素。这项研究的目的是评估热应激对射精精子的持久影响以及热应激对附睾精子的即时或长期影响。我们观察到治疗后射精精子的运动能力和运动能力下降,以及表现出主要缺陷和次要缺陷的精子百分比增加,血浆和顶体膜受损,并且线粒体膜电位高的精子百分比下降。分组直到一个精子周期。在治疗组的射精中观察到谷胱甘肽过氧化物酶的酶活性增加和应激细胞的增加。在治疗组中观察到具有高线粒体膜电位的附睾精子百分比降低。但是,比较即时和长期作用时,我们观察到线粒体膜电位低的精子百分比增加。总之,睾丸热应激诱导的氧化应激导致射精的精子在一个精子周期后和附睾精子在30天后可改变。

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