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导致男性不育的重要病理状况下精子细胞膜上的氧化通量变化。

Oxidation flux change on spermatozoa membrane in important pathologic conditions leading to male infertility.

作者信息

Wiwanitkit V

机构信息

Department of Laboratory Medicine, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand.

出版信息

Andrologia. 2008 Jun;40(3):192-4. doi: 10.1111/j.1439-0272.2008.00840.x.

Abstract

Free radicals or reactive oxygen species mediate their action through proinflammatory cytokines and this mechanism has been proposed as a common underlying factor for male infertility. There is extensive literature on oxidative stress and its role in male infertility and sperm DNA damage and its effects on assisted reproductive techniques. However, there has never been a report on the oxidation flux change in spermatozoa. Here, the author determined the oxidation flux change in such hypoxic cases, using the simulation test based on nanomedicine technique is used. Of interest, change of flux can be detected. The main pathogenesis should be the direct injury of membrane structure of spermatozoa by free radicals which can lead to sperm defect. Therefore, this work can support the finding that the oxidation flux change corresponding to oxygen pressure change in spermatozoa does not exist. However, the flux change can be seen if the membrane thickness of spermatozoa is varied. Thin membrane spermatozoa are more prone to oxidative stress than thick membrane ones. The defect in the enzymatic system within the spermatozoa should be a better explanation for vulnerability of spermatozoa to oxidative stress. The use of enzymatic modification technique by antioxidants can be useful alternative in management of male infertility.

摘要

自由基或活性氧通过促炎细胞因子介导其作用,这一机制被认为是男性不育的一个共同潜在因素。关于氧化应激及其在男性不育中的作用、精子DNA损伤及其对辅助生殖技术的影响,有大量的文献报道。然而,从未有过关于精子氧化通量变化的报道。在此,作者利用基于纳米医学技术的模拟试验,测定了此类缺氧情况下的氧化通量变化。有趣的是,可以检测到通量的变化。主要发病机制应为自由基对精子膜结构的直接损伤,这可导致精子缺陷。因此,这项工作可以支持这样一个发现,即精子中不存在与氧压变化相对应的氧化通量变化。然而,如果精子的膜厚度发生变化,就可以看到通量变化。薄膜精子比厚膜精子更容易受到氧化应激的影响。精子内酶系统的缺陷应该是精子易受氧化应激影响的更好解释。通过抗氧化剂使用酶修饰技术可能是治疗男性不育的一种有用的替代方法。

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