The effects of MitoQ as a mitochondrial-targeted antioxidant in a plant-based extender on buck sperm quality parameters during cryopreservation

IF 2.2 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Reproduction Science Pub Date : 2024-05-28 DOI:10.1016/j.anireprosci.2024.107517
Maryam Hatami , Reza Masoudi , Ali Hatefi , Parisa Alipour-Jenaghard , Vahid Esmaeili
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Abstract

Sperm cryopreservation plays an important role in the artificial insemination (AI) industry of small ruminants. It, however the use of frozen-thawed goat semen is limited due to the insufficient number of sperm with good biological functions. Mitochondria are the most sensitive organelles to cryopreservation damage in sperm. This study was conducted to determine the effects of MitoQ, the mitochondrial-targeted antioxidant, in a plant-based extender on the quality parameters of Markhoz goat sperm after the freezing and thawing process. Semen samples were collected and diluted in the extender, divided into five equal aliquots and supplemented with 0, 1, 10, 100 and 1000 nM MitoQ and cryopreserved in liquid nitrogen. After thawing, sperm motility, membrane functionality, abnormal morphology, mitochondrial activity, acrosome integrity, lipid peroxidation (LPO), DNA fragmentation, reactive oxygen species (ROS) concentration, viability and apoptotic-like changes were measured. The use of 10 and 100 nM MitoQ resulted in higher (P≤0.05) total motility (TM), progressive motility (PM), viability, membrane functionality, mitochondrial activity, and acrosome integrity compared to the other groups. On the other hand, LPO, apoptotic-like changes, DNA fragmentation and ROS concentration were lower (P≤0.05) in MQ10 and MQ100 groups compared to the other groups. MitoQ has no effect (P>0.05) on sperm abnormal morphology and velocity parameters. In conclusion, MitoQ can reduce oxidative stress by regulating mitochondrial function during the cryopreservation process of buck sperm and could be an effective additive in the cryopreservation media to protect sperm quality.

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MitoQ 作为一种线粒体靶向抗氧化剂,在植物基扩展剂中对冷冻保存期间降压精子质量参数的影响。
精子冷冻保存在小型反刍动物人工授精(AI)行业中发挥着重要作用。然而,由于具有良好生物功能的精子数量不足,冷冻解冻山羊精液的使用受到限制。线粒体是精子中对冷冻损伤最敏感的细胞器。本研究旨在确定线粒体靶向抗氧化剂 MitoQ 在植物基扩展剂中的应用对冷冻解冻过程后 Markhoz 山羊精子质量参数的影响。采集精液样本并用扩展剂稀释,分成五个等量等分,分别添加0、1、10、100和1000 nM MitoQ,然后在液氮中冷冻保存。解冻后,测量精子活力、膜功能、异常形态、线粒体活性、顶体完整性、脂质过氧化(LPO)、DNA 断裂、活性氧(ROS)浓度、存活率和凋亡样变化。与其他组相比,使用 10 nM 和 100 nM MitoQ 可提高(P≤0.05)总活力(TM)、渐进活力(PM)、存活率、膜功能、线粒体活性和顶体完整性。另一方面,与其他组相比,MQ10 和 MQ100 组的 LPO、凋亡样变化、DNA 断裂和 ROS 浓度较低(P≤0.05)。MitoQ对精子异常形态和速度参数没有影响(P>0.05)。总之,MitoQ可以通过调节线粒体功能来减少降压精子冷冻保存过程中的氧化应激,可作为冷冻保存介质的有效添加剂来保护精子质量。
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来源期刊
Animal Reproduction Science
Animal Reproduction Science 农林科学-奶制品与动物科学
CiteScore
4.50
自引率
9.10%
发文量
136
审稿时长
54 days
期刊介绍: Animal Reproduction Science publishes results from studies relating to reproduction and fertility in animals. This includes both fundamental research and applied studies, including management practices that increase our understanding of the biology and manipulation of reproduction. Manuscripts should go into depth in the mechanisms involved in the research reported, rather than a give a mere description of findings. The focus is on animals that are useful to humans including food- and fibre-producing; companion/recreational; captive; and endangered species including zoo animals, but excluding laboratory animals unless the results of the study provide new information that impacts the basic understanding of the biology or manipulation of reproduction. The journal''s scope includes the study of reproductive physiology and endocrinology, reproductive cycles, natural and artificial control of reproduction, preservation and use of gametes and embryos, pregnancy and parturition, infertility and sterility, diagnostic and therapeutic techniques. The Editorial Board of Animal Reproduction Science has decided not to publish papers in which there is an exclusive examination of the in vitro development of oocytes and embryos; however, there will be consideration of papers that include in vitro studies where the source of the oocytes and/or development of the embryos beyond the blastocyst stage is part of the experimental design.
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