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Mitochondrial Dysfunction and Oxidative Stress Caused by Cryopreservation in Reproductive Cells

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ANTIOXIDANTS
卷 10, 期 3, 页码 -

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MDPI
DOI: 10.3390/antiox10030337

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mitochondria; cryopreservation; oxidative stress; sperm; oocyte; gonadal tissue

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Mitochondria play a crucial role in cell metabolism and ATP synthesis, while also being responsible for generating ROS and maintaining calcium homeostasis. Dysfunction in mitochondria can lead to oxidative stress, affecting cell function. Assisted reproductive technologies and cryopreservation may compromise mitochondrial function, impacting reproductive outcomes by affecting sperm and oocyte quality and fertilization dynamics.
Mitochondria, fundamental organelles in cell metabolism, and ATP synthesis are responsible for generating reactive oxygen species (ROS), calcium homeostasis, and cell death. Mitochondria produce most ROS, and when levels exceed the antioxidant defenses, oxidative stress (OS) is generated. These changes may eventually impair the electron transport chain, resulting in decreased ATP synthesis, increased ROS production, altered mitochondrial membrane permeability, and disruption of calcium homeostasis. Mitochondria play a key role in the gamete competence to facilitate normal embryo development. However, iatrogenic factors in assisted reproductive technologies (ART) may affect their functional competence, leading to an abnormal reproductive outcome. Cryopreservation, a fundamental technology in ART, may compromise mitochondrial function leading to elevated intracellular OS that decreases sperm and oocytes' competence and the dynamics of fertilization and embryo development. This article aims to review the role played by mitochondria and ROS in sperm and oocyte function and the close, biunivocal relationships between mitochondrial damage and ROS generation during cryopreservation of gametes and gonadal tissues in different species. Based on current literature, we propose tentative hypothesis of mechanisms involved in cryopreservation-associated mitochondrial dysfunction in gametes, and discuss the role played by antioxidants and other agents to retain the competence of cryopreserved reproductive cells and tissues.

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