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Antioxidant Enzymes and Male Fertility: Lessons from Knockout Models

机译:抗氧化酶和男性生育率:淘汰赛模型的课程

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Significance: Spermatozoa are very sensitive to high levels of reactive oxygen species (ROS) due to the limited antioxidant systems present in these terminal cells. However, tight regulation of ROS levels must be ensured to accomplish the unique goal of the spermatozoon, that is, the transfer of the paternal genome into the mature oocyte during the fertilization process. Thus, it is essential that the restricted antioxidant enzymatic systems are active for sperm function.Recent Advances: Oxidative stress is associated with low sperm quality. High levels of ROS in spermatozoa produce oxidation of lipids, proteins, and DNA that lead to lipid peroxidation, oxidation of essential structural proteins and enzymes, and mutations due to oxidation of DNA.Critical Issues: In this study, we described the available knockout mouse models that helped to better understand the role of different antioxidant enzymes in male fertility. We focused mainly on those studies that directly explore the effects of the lack of these enzymes in male fertility and included information when existing knockout mouse models produced for other purposes were used. Special attention was given in this review to the consequences of the absence of antioxidant enzymes on sperm quality and fertility of aging males from the knockout models.Future Directions: Further studies using novel mouse models lacking different antioxidants and their combinations are essential to understand the consequences of high levels of ROS in aging testes, epididymes, spermatozoa, and embryo development to produce a healthy baby.
机译:显着性:由于存在这些终端细胞中存在的有限抗氧化剂系统,精子对高水平的活性氧物质(ROS)非常敏感。然而,必须确保对ROS水平的紧张调节来实现精子的独特目标,即父系基因组在受精过程中转移到成熟卵母细胞中。因此,必要的是,受限制的抗氧化剂酶系统是活性物质功能的。特性进展:氧化应激与低精子质量相关。精子中的高水平ROS产生脂质,蛋白质和DNA的氧化,导致脂质过氧化,基本结构蛋白质和酶的氧化,以及由于DNA的氧化而导致的突变。在本研究中,我们描述了可用的敲除鼠标有助于更好地理解不同抗氧化酶在雄性生育中的作用的模型。我们主要专注于这些研究,即直接探讨缺乏这些酶在男性生育能力中的影响,并在使用用于其他目的的现有淘汰小鼠模型时包括信息。本综述对抗氧化酶的后果对来自敲除模型的衰老的抗氧化酶的后果。用方向:使用缺乏不同抗氧化剂的新型小鼠模型的进一步研究对于了解后果至关重要老化睾丸,附睾,精子和胚胎发育中的高水平ROS产生健康的婴儿。

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