Aitken R J, Gordon E, Harkiss D, Twigg J P, Milne P, Jennings Z, Irvine D S
MRC Reproductive Biology Unit, Edinburgh EH3 9EW, United Kingdom.
Biol Reprod. 1998 Nov;59(5):1037-46. doi: 10.1095/biolreprod59.5.1037.
Reactive oxygen metabolites are known to disrupt sperm-oocyte fusion, sperm movement, and DNA integrity; however, the relative sensitivities of these elements to oxidative stress are unknown. In this study these factors were assessed in human spermatozoa exposed to increasing levels of oxidative stress achieved through the stimulation of endogenous oxidant generation with NADPH or direct exposure to hydrogen peroxide. At low levels of oxidative stress, DNA fragmentation was significantly reduced while the rates of sperm-oocyte fusion were significantly enhanced. As the level of oxidative stress increased, the spermatozoa exhibited significantly elevated levels of DNA damage (p < 0.001) and yet continued to express an enhanced capacity for sperm-oocyte fusion. At the highest levels of oxidative stress, extremely high rates of DNA fragmentation were observed but the spermatozoa exhibited a parallel loss in their capacities for movement and oocyte fusion. These studies emphasize how redox mechanisms can either enhance or disrupt the functional and genomic integrity of human spermatozoa depending on the intensity of the oxidative stimulus. Because these qualities are affected at different rates, spermatozoa exhibiting significant DNA damage are still capable of fertilizing the oocyte. These results may have long-term implications for the safety of assisted conception procedures in cases associated with oxidative stress.
已知活性氧代谢产物会破坏精子与卵母细胞的融合、精子运动及DNA完整性;然而,这些因素对氧化应激的相对敏感性尚不清楚。在本研究中,通过用NADPH刺激内源性氧化剂生成或直接暴露于过氧化氢来增加氧化应激水平,从而对人类精子中的这些因素进行评估。在低水平氧化应激下,DNA片段化显著减少,而精子与卵母细胞的融合率显著提高。随着氧化应激水平的增加,精子表现出显著升高的DNA损伤水平(p < 0.001),但仍继续表现出增强的精子与卵母细胞融合能力。在最高水平的氧化应激下,观察到极高的DNA片段化率,但精子在运动和与卵母细胞融合的能力方面也出现了相应的丧失。这些研究强调了氧化还原机制如何根据氧化刺激的强度增强或破坏人类精子的功能和基因组完整性。由于这些特性受到不同速率的影响,表现出显著DNA损伤的精子仍然能够使卵母细胞受精。这些结果可能对与氧化应激相关病例中的辅助受孕程序的安全性具有长期影响。