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靶向抗氧化剂递送调节线粒体功能,改善冷冻保存过程中的氧化应激并保持精子质量。

Targeted antioxidant delivery modulates mitochondrial functions, ameliorates oxidative stress and preserve sperm quality during cryopreservation.

机构信息

Artificial Breeding Research Centre, LPM Division, ICAR-National Dairy Research Institute, Karnal, 132001, Haryana, India.

Artificial Breeding Research Centre, LPM Division, ICAR-National Dairy Research Institute, Karnal, 132001, Haryana, India.

出版信息

Theriogenology. 2022 Feb;179:22-31. doi: 10.1016/j.theriogenology.2021.11.013. Epub 2021 Nov 19.

Abstract

Mitochondria are vital organelles with a multifaceted role in cellular bioenergetics, biosynthesis, signaling and calcium homeostasis. During oxidative phosphorylation, sperm mitochondria generate reactive oxygen species (ROS) at physiological levels mediating signaling pathways essential for sperm fertilizing competence. Moreover, sperm subpopulation with active mitochondria is positively associated with sperm motility, chromatin and plasma membrane integrity, and normal morphology. However, the osmotic and thermal stress, and intracellular ice crystal formation generate excess ROS to cause mitochondrial dysfunction, potentiating cryoprotectant-induced calcium overload in the mitochondrial matrix. It further stimulates the opening of mitochondrial permeability transition pores (mPTP) to release pro-apoptotic factors from mitochondria and initiate apoptotic cascade, with a decrease in Mitochondrial Membrane Potential (MMP) and altered sperm functions. To improve the male reproductive potential, it is essential to address challenges in semen cryopreservation, precisely the deleterious effects of oxidative stress on sperm quality. During semen cryopreservation, the supplementation of extended semen with conventional antioxidants is extensively reported. However, the outcomes of supplementation to improve semen quality are inconclusive across different species, which is chiefly attributed to the unknown bioavailability of antioxidants at the primary site of ROS generation, i.e., mitochondria. Increasing evidence suggests that the targeted delivery of antioxidants to sperm mitochondria is superior in mitigating oxidative stress and improving semen freezability than conventional antioxidants. Therefore, the present review comprehensively describes mitochondrial-targeted antioxidants, their mechanism of action and effects of supplementation on improving semen cryopreservation efficiency in different species. Moreover, it also discusses the significance of active mitochondria in determining sperm fertilizing competence, cryopreservation-induced oxidative stress and mitochondrial dysfunction, and its implications on sperm fertility. The potential of mitochondrial-targeted antioxidants to modulate mitochondrial functions and improve semen quality has been reviewed extensively.

摘要

线粒体是具有多种功能的重要细胞器,在细胞生物能量学、生物合成、信号转导和钙稳态中发挥着重要作用。在线粒体氧化磷酸化过程中,精子线粒体在生理水平上产生活性氧(ROS),介导对精子受精能力至关重要的信号通路。此外,具有活跃线粒体的精子亚群与精子运动能力、染色质和质膜完整性以及正常形态呈正相关。然而,渗透和热应激以及细胞内冰晶形成会产生过多的 ROS,导致线粒体功能障碍,加剧线粒体基质中冷冻保护剂诱导的钙超载。这进一步刺激线粒体通透性转换孔(mPTP)的开放,使促凋亡因子从线粒体中释放出来,并启动凋亡级联反应,导致线粒体膜电位(MMP)降低和精子功能改变。为了提高男性生殖能力,必须解决精液冷冻保存中的挑战,即氧化应激对精子质量的有害影响。在精液冷冻保存过程中,广泛报道了在延长精液中添加传统抗氧化剂。然而,不同物种补充抗氧化剂以改善精子质量的结果并不一致,这主要归因于抗氧化剂在 ROS 产生的主要部位(即线粒体)的未知生物利用度。越来越多的证据表明,将抗氧化剂靶向递送至精子线粒体在减轻氧化应激和提高精液可冻存性方面优于传统抗氧化剂。因此,本综述全面描述了线粒体靶向抗氧化剂、它们的作用机制以及在不同物种中补充它们对改善精液冷冻保存效率的影响。此外,还讨论了活跃线粒体在决定精子受精能力、冷冻保存诱导的氧化应激和线粒体功能障碍以及对精子生育力的影响方面的意义。线粒体靶向抗氧化剂调节线粒体功能和改善精子质量的潜力已被广泛研究。

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