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男性不育中的氧化还原平衡:适度为佳——“万事适度最美好”

Redox Balance in Male Infertility: Excellence through Moderation-"Μέτρον ἄριστον".

作者信息

Symeonidis Evangelos N, Evgeni Evangelini, Palapelas Vasileios, Koumasi Dimitra, Pyrgidis Nikolaos, Sokolakis Ioannis, Hatzichristodoulou Georgios, Tsiampali Chara, Mykoniatis Ioannis, Zachariou Athanasios, Sofikitis Nikolaos, Kaltsas Ares, Dimitriadis Fotios

机构信息

Department of Urology, "G. Gennimatas" General Hospital, Aristotle University of Thessaloniki, 54635 Thessaloniki, Greece.

Cryogonia Cryopreservation Bank, 11526 Athens, Greece.

出版信息

Antioxidants (Basel). 2021 Sep 27;10(10):1534. doi: 10.3390/antiox10101534.

Abstract

Male infertility, a relatively common and multifactorial medical condition, affects approximately 15% of couples globally. Based on WHO estimates, a staggering 190 million people struggle with this health condition, and male factor is the sole or contributing factor in roughly 20-50% of these cases. Nowadays, urologists are confronted with a wide spectrum of conditions ranging from the typical infertile male to more complex cases of either unexplained or idiopathic male infertility, requiring a specific patient-tailored diagnostic approach and management. Strikingly enough, no identifiable cause in routine workup can be found in 30% to 50% of infertile males. The medical term male oxidative stress infertility (MOSI) was recently coined to describe infertile men with abnormal sperm parameters and oxidative stress (OS), including those previously classified as having idiopathic infertility. OS is a critical component of male infertility, entailing an imbalance between reactive oxygen species (ROS) and antioxidants. ROS abundance has been implicated in sperm abnormalities, while the exact impact on fertilization and pregnancy has long been a subject of considerable debate. In an attempt to counteract the deleterious effects of OS, urologists resorted to antioxidant supplementation. Mounting evidence indicates that indiscriminate consumption of antioxidants has led in some cases to sperm cell damage through a reductive-stress-induced state. The "antioxidant paradox", one of the biggest andrological challenges, remains a lurking danger that needs to be carefully avoided and thoroughly investigated. For that reason, oxidation-reduction potential (ORP) emerged as a viable ancillary tool to basic semen analysis, measuring the overall balance between oxidants and antioxidants (reductants). A novel biomarker, the Male infertility Oxidative System (MiOXSYS), is a paradigm shift towards that goal, offering a quantification of OS via a quick, reliable, and reproducible measurement of the ORP. Moderation or "" according to the ancient Greeks is the key to successfully safeguarding redox balance, with MiOXSYS earnestly claiming its position as a guarantor of homeostasis in the intracellular redox milieu. In the present paper, we aim to offer a narrative summary of evidence relevant to redox regulation in male reproduction, analyze the impact of OS and reductive stress on sperm function, and shed light on the "antioxidant paradox" phenomenon. Finally, we examine the most up-to-date scientific literature regarding ORP and its measurement by the recently developed MiOXSYS assay.

摘要

男性不育是一种相对常见的多因素医学病症,全球约15%的夫妇受其影响。根据世界卫生组织的估计,多达1.9亿人患有这种健康问题,其中男性因素是约20%-50%此类病例的唯一或促成因素。如今,泌尿科医生面临着各种各样的病症,从典型的不育男性到不明原因或特发性男性不育的更复杂病例,这需要针对患者的特定诊断方法和治疗手段。令人惊讶的是,在30%至50%的不育男性的常规检查中找不到可识别的病因。医学术语男性氧化应激不育(MOSI)最近被创造出来,用于描述精子参数异常和存在氧化应激(OS)的不育男性,包括那些以前被归类为特发性不育的男性。氧化应激是男性不育的一个关键因素,涉及活性氧(ROS)和抗氧化剂之间的失衡。ROS的大量存在与精子异常有关,而其对受精和妊娠的确切影响长期以来一直是一个备受争议的话题。为了抵消氧化应激的有害影响,泌尿科医生采取了补充抗氧化剂的方法。越来越多的证据表明,不加区分地服用抗氧化剂在某些情况下会通过还原应激诱导状态导致精子细胞损伤。“抗氧化剂悖论”是男科领域最大的挑战之一,仍然是一个需要谨慎避免和深入研究的潜在危险。因此,氧化还原电位(ORP)作为基础精液分析的一种可行辅助工具出现了,它可以测量氧化剂和抗氧化剂(还原剂)之间的总体平衡。一种新的生物标志物——男性不育氧化系统(MiOXSYS),是朝着这个目标的范式转变,它通过快速、可靠和可重复的ORP测量来量化氧化应激。适度或如古希腊人所说的“中庸”是成功维护氧化还原平衡的关键,MiOXSYS切实地宣称自己是细胞内氧化还原环境中体内平衡的保障者。在本文中,我们旨在对男性生殖中氧化还原调节的相关证据进行叙述性总结,分析氧化应激和还原应激对精子功能的影响,并阐明“抗氧化剂悖论”现象。最后,我们研究了关于ORP及其通过最近开发的MiOXSYS检测方法进行测量的最新科学文献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/474e/8533291/de8d355a9895/antioxidants-10-01534-g001.jpg

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