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种马精子中MTT还原的致病机制及功能关联

Causative mechanisms and functional correlates of MTT reduction in stallion spermatozoa.

作者信息

Medica Ashlee Jade, Gibb Zamira, Sheridan Alecia, Harrison Natasha, Aitken Robert John

机构信息

Priority Research Centre for Reproductive Science, College of Engineering, Science and Environmental, and Faculty of Health and Medicine, University of Newcastle, Callaghan, New South Wales, Australia.

出版信息

Reproduction. 2022 Apr 22;163(6):341-350. doi: 10.1530/REP-21-0464.

Abstract

MTT is a commonly used cell vitality probe, due to its ability to form insoluble formazan deposits at cellular locations of intense oxidoreductase activity. Although this response is considered a reflection of mitochondrial redox activity, extra-mitochondrial sites of MTT reduction have been recognized within the spermatozoa of several mammalian species. Therefore, the aim of this study was to determine the major sites and causative mechanisms of MTT reduction in stallion spermatozoa. Our results show that stallion spermatozoa displayed substantial mitochondrial formazan deposition, as well as a single extra-mitochondrial formazan deposit in various locations on the sperm head in approximately 20% of cells. The quality and capacitation status of stallion spermatozoa were positively correlated with the presence of an extra-mitochondrial formazan granule. Additionally, extra-mitochondrial formazan deposition was suppressed by the presence of an NADPH oxidase (NOX) inhibitor (VAS2870; active against NOX2, NOX4 and NOX5), MnTMPyP (SOD mimetic) and zinc (NOX5 inhibitor) suggesting that extra-mitochondrial MTT reduction may be facilitated by NOX-mediated ROS generating activity, conceivably NOX5 or NOX2. When comparing MTT to resazurin, another well-known probe used to detect metabolically active cells, MTT reduction had a higher correlation with sperm concentration and motility parameters (R2= 0.91), than resazurin reduction (R2 = 0.76). We conclude that MTT reduction in stallion spermatozoa follows a species-specific pattern due to a high dependence on oxidative phosphorylation and a degree of NOX activity. As such, MTT reduction is a useful diagnostic tool to assess extra-mitochondrial redox activity, and therefore, the functional qualities of stallion spermatozoa.

摘要

MTT是一种常用的细胞活力探针,因为它能够在具有强烈氧化还原酶活性的细胞部位形成不溶性的甲臜沉淀。尽管这种反应被认为是线粒体氧化还原活性的一种反映,但在几种哺乳动物的精子中,已经认识到MTT还原的线粒体外位点。因此,本研究的目的是确定种马精子中MTT还原的主要位点和致病机制。我们的结果表明,种马精子表现出大量的线粒体甲臜沉淀,并且在大约20%的细胞中,精子头部的不同位置有单个线粒体外甲臜沉淀。种马精子的质量和获能状态与线粒体外甲臜颗粒的存在呈正相关。此外,NADPH氧化酶(NOX)抑制剂(VAS2870;对NOX2、NOX4和NOX5有活性)、MnTMPyP(超氧化物歧化酶模拟物)和锌(NOX5抑制剂)的存在抑制了线粒体外甲臜沉淀,这表明NOX介导的活性氧生成活性,可能是NOX5或NOX2,可能促进了线粒体外MTT的还原。当将MTT与刃天青(另一种用于检测代谢活跃细胞的著名探针)进行比较时,MTT还原与精子浓度和活力参数的相关性(R2 = 0.91)高于刃天青还原(R2 = 0.76)。我们得出结论,由于种马精子对氧化磷酸化的高度依赖性和一定程度的NOX活性,MTT还原遵循物种特异性模式。因此,MTT还原是评估线粒体外氧化还原活性以及种马精子功能质量的一种有用的诊断工具。

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