Arjun Venkateshappa, Kumar Pradeep, Dutt Ravi, Kumar Amit, Bala Renu, Verma Nisha, Jerome Andonissamy, Virmani Meenakshi, Patil Chandra Shekhar, Bhardwaj Shivani, Kumar Dharmendra, Yadav Prem Singh
Animal Physiology and Reproduction Division, ICAR-Central Institute for Research on Buffaloes, Hisar, Haryana, India.
Department of Veterinary Gynaecology and Obstetrics, Lala Lajpat Rai University of Veterinary and Animal Sciences, Hisar, Haryana, India.
Andrologia. 2022 Aug;54(7):e14431. doi: 10.1111/and.14431. Epub 2022 Apr 22.
Sperm mitochondrion is one of the major susceptible organelles that get damaged during cryopreservation. The study aimed to minimize mitochondrial dysfunction and oxidative stress during sperm cryopreservation using mitochondria-specific antioxidants. For this, semen was collected from five buffalo bulls (3 ejaculates/bull). The ejaculates were diluted in an low-density lipoprotein-based extender and divided into four equal aliquots. Mitochondria-targeted antioxidant (MitoQ) was added at a final concentration of 0 (control), 0.02, 0.2 and 2 μM separately in each aliquotes and cryopreserved. The addition of MitoQ at a concentration of 0.02 μM improved post-thaw sperm motility, plasma membrane integrity and able to sustain sperm motility for a longer time. To investigate MitoQ's effects on mitochondrial function, we measured mitochondrial membrane potential (MMP) using JC-1 dye, superoxide production using Mitosox assay, and lipid peroxidation by TBARS assay. The supplementation of 0.02 μM MitoQ in the extender prevented the significant reduction of MMP and reduced superoxide production resulting in lower lipid peroxidation of sperm plasma membrane after cryopreservation. Further, we found that a higher concentration of MitoQ decreases MMP and increases mitochondrial superoxide production. In conclusion, MitoQ @ 0.02 μM can alleviate oxidative stress by regulating mitochondrial functionality in spermatozoa during cryopreservation.
精子线粒体是冷冻保存过程中主要的易受损细胞器之一。本研究旨在使用线粒体特异性抗氧化剂将精子冷冻保存期间的线粒体功能障碍和氧化应激降至最低。为此,从5头水牛公牛收集精液(每头公牛3次射精)。将射精液用基于低密度脂蛋白的稀释液稀释,并分成4等份。在每个等分试样中分别加入终浓度为0(对照)、0.02、0.2和2μM的线粒体靶向抗氧化剂(MitoQ),然后进行冷冻保存。添加浓度为0.02μM的MitoQ可提高解冻后精子活力、质膜完整性,并能使精子活力维持更长时间。为了研究MitoQ对线粒体功能的影响,我们使用JC-1染料测量线粒体膜电位(MMP),使用Mitosox检测法测量超氧化物生成,并通过硫代巴比妥酸反应物(TBARS)检测法测量脂质过氧化。在稀释液中添加0.02μM的MitoQ可防止冷冻保存后MMP的显著降低,并减少超氧化物生成,从而降低精子质膜的脂质过氧化。此外,我们发现较高浓度的MitoQ会降低MMP并增加线粒体超氧化物生成。总之,0.02μM的MitoQ可通过调节冷冻保存期间精子的线粒体功能来减轻氧化应激。