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精子氧化还原系统平衡:对受精和男性生育力的影响。

Sperm Redox System Equilibrium: Implications for Fertilization and Male Fertility.

机构信息

Division of Animal Sciences, and Department of Obstetrics, Gynecology and Women's Health, University of Missouri, Columbia, MO, USA.

Department of Biomedical and Molecular Sciences, Queen's University, Kingston, ON, Canada.

出版信息

Adv Exp Med Biol. 2022;1358:345-367. doi: 10.1007/978-3-030-89340-8_15.

Abstract

Structural and regulatory requirements of mammalian spermatozoa in both development and function make them extremely unique cells. Looking at the complexity of spermatozoon structure and its requirements for both motility and quick breakdown within the post-fertilization environment, as well as its functional needs as an extremely streamlined cell with high energy requirements, demonstrate the high importance of oxidative-reductive processes. The oxidative state of the testis and epididymis during sperm development and maturation highly influences sperm structure, with a high dependence on disulfide bond formation, facilitated by thiol mediated processes. However, once functionally active, sperm transition to a new high-risk functional paradigm requiring low levels of reactive oxygen species (ROS) while also being highly susceptible to oxidative damage due to the high proportion of polyunsaturated fatty acids within the lipid bilayer of the plasmalemma and the lack of cytosolic antioxidant defenses. This chapter highlights how glutathione and thioredoxin systems mediate the oxidative environment of the male reproductive tract and facilitate the successful development, maturation and function of mammalian spermatozoa.

摘要

哺乳动物精子在发育和功能方面的结构和调节要求使它们成为极其独特的细胞。从精子结构的复杂性及其在受精后环境中对运动和快速分解的要求,以及作为具有高能量需求的高度流线型细胞的功能需求来看,氧化还原过程的重要性不言而喻。精子发生和成熟过程中睾丸和附睾的氧化状态对精子结构有很大影响,高度依赖于二硫键的形成,这是由巯基介导的过程促成的。然而,一旦具有功能活性,精子就会过渡到一个新的高风险功能模式,需要低水平的活性氧 (ROS),同时由于质膜脂质双层中多不饱和脂肪酸的比例高以及细胞质抗氧化防御缺乏,精子也极易受到氧化损伤。本章重点介绍谷胱甘肽和硫氧还蛋白系统如何调节男性生殖道的氧化环境,并促进哺乳动物精子的成功发育、成熟和功能。

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