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[人类精液中的氧化还原系统与精子的过氧化损伤]

[The redox system in human semen and peroxidative damage of spermatozoa].

作者信息

Fraczek Monika, Kurpisz Maciej

机构信息

Instytut Genetyki Człowieka Polskiej Akademii Nauk w Poznaniu.

出版信息

Postepy Hig Med Dosw (Online). 2005;59:523-34.

Abstract

Epidemiologic studies on male infertility suggest that many cases should be considered idiopathic infertility, that is an exact cause of the inability to induce conception cannot be identified. Recently it was found that the redox status within the male gamete or in the semen can be at least partly responsible for the etiology of infertility. Each living cell is capable of producing reactive oxygen species (ROS), such as superoxide anion, hydroxyl radical, singlet oxygen, or hydrogen peroxide. This process involves the male germ cells as well. A certain amount of free radicals generated in the respiratory chain is necessary for the normal function of sperm cells. In cases of overproduction of ROS, the antioxidant potential of sperm cells can be exhausted and oxidative stress may develop. Prolonged exposure of sperm cells to ROS may cause peroxidation of the cell membrane lipids, alter the structure of protein receptors, enzymes, and transporter proteins, and affect sperm DNA fragmentation. This review aims to summarize the current state of knowledge regarding the redox system in male sperm and the consequences of oxidative stress on semen quality and sperm cell function.

摘要

关于男性不育的流行病学研究表明,许多病例应被视为特发性不育,即无法确定导致受孕失败的确切原因。最近发现,雄配子或精液中的氧化还原状态至少在一定程度上与不育的病因有关。每个活细胞都能够产生活性氧(ROS),如超氧阴离子、羟基自由基、单线态氧或过氧化氢。这个过程也涉及雄性生殖细胞。呼吸链中产生一定量的自由基对于精子细胞的正常功能是必要的。在ROS产生过多的情况下,精子细胞的抗氧化潜力可能会耗尽,从而可能产生氧化应激。精子细胞长时间暴露于ROS可能会导致细胞膜脂质过氧化,改变蛋白质受体、酶和转运蛋白的结构,并影响精子DNA片段化。本综述旨在总结关于男性精子氧化还原系统的当前知识状态以及氧化应激对精液质量和精子细胞功能的影响。

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