Nanotechnology in reproduction: Vitamin E nanoemulsions for reducing oxidative stress in sperm cells

氧化应激 精子 活性氧 维生素E 男科 孵化 抗氧化剂 精子活力 维生素C 氧化磷酸化 化学 脂质过氧化 运动性 生物 生物化学 细胞生物学 医学
作者
Francisca Sánchez-Rubio,Pedro Javier Soria‐Meneses,Alejandro Jurado‐Campos,J. Bartolomé-García,Virgilio Gómez‐Rubio,Ana Josefa Soler,María del Mar Arroyo Jiménez,Manuel J. Santander‐Ortega,María Plaza-Oliver,M.V. Lozano,José Julián Garde,M.R. Fernández-Santos
出处
期刊:Free Radical Biology and Medicine [Elsevier BV]
卷期号:160: 47-56 被引量:34
标识
DOI:10.1016/j.freeradbiomed.2020.07.024
摘要

Vitamin E is considered a powerful biological antioxidant; however, its characteristics such as high hydrophobicity and low stability limit its application. We propose to use nanotechnology as an innovative tool in spermatology, formulating nanoemulsions (NE) that accommodate vitamin E, protecting it from oxidation and promoting its release into the medium. The protective effect of the NE against oxidative stress was assessed in red deer epididymal sperm incubated at 37 °C. Cryopreserved sperm from eleven stags were thawed and extended to 400 × 106 sperm/ml in Bovine Gamete Medium (BGM). Once aliquoted, the samples were supplemented with the NE at different concentrations (0, 6 and 12 mM), with or without induced oxidative stress (100 μM Fe2+/ascorbate). The samples were evaluated after 0, 2 and 4 h of incubation at 37 °C. Motility (CASA), viability, mitochondrial membrane potential, acrosomal status, lipoperoxidation (C11 BODIPY 581/591), intracellular reactive oxygen species (ROS) production and DNA status (SCSA®) were assessed. After 2 and 4 h of incubation, the NE were able to prevent the deleterious effects of oxidative stress, thus improving total and progression motility (P ˂0.05). Moreover, the highest concentration tested (12 mM) improved almost every sperm kinematic variable (P ˂0.05) and preserved sperm viability in samples subjected to oxidative stress. In addition, 12 mM of NE protected the acrosomes integrity, maintained and protected mitochondrial activity, prevented sperm lipoperoxidation and reduced ROS production (P ˂0.05) in samples subjected to oxidative stress. This work indicates for the first time that vitamin E formulated in NE could be a new approach against sperm oxidative damage. This could be highly relevant for sperm physiology preservation in the context of assisted reproduction techniques.
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