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表儿茶素通过抗氧化活性和跨膜离子通道稳定作用防止牛精子的冷冻损伤。

Epicatechin Prevents Cryocapacitation of Bovine Spermatozoa through Antioxidant Activity and Stabilization of Transmembrane Ion Channels.

机构信息

Institute of Biotechnology, Faculty of Biotechnology and Food Sciences, Slovak University of Agriculture in Nitra, Tr. A. Hlinku 2, 949 76 Nitra, Slovakia.

Institute of Applied Biology, Faculty of Biotechnology and Food Sciences, Slovak University of Agriculture in Nitra, Tr. A. Hlinku 2, 949 76 Nitra, Slovakia.

出版信息

Int J Mol Sci. 2023 Jan 28;24(3):2510. doi: 10.3390/ijms24032510.

Abstract

Epicatechin (EPC) is a flavonoid belonging to the family of catechins; it has been described as a powerful scavenger of a wide spectrum of reactive oxygen species (ROS) and a modulator of ex vivo sperm vitality. In this study, we assessed the potential protective abilities of EPC on cryopreserved bovine spermatozoa. We focused on conventional quality parameters, as well as the oxidative profile of spermatozoa alongside capacitation patterns, and expression profiles of proteins involved in the process of capacitation. Semen samples were cryopreserved in the presence of 25, 50 or 100 μmol/L EPC and compared to native semen (negative control) as well as ejaculates frozen in the absence of EPC (positive control). A dose-dependent improvement of conventional sperm quality parameters was observed following EPC administration, particularly in case of the sperm motility, membrane, acrosome and DNA integrity in comparison to the positive control. Experimental groups exposed to all EPC doses presented with a significantly lower proportion of capacitated spermatozoa as opposed to the positive control. While no significant effects of EPC were observed in cases of superoxide production, a significant decrease in the levels of hydrogen peroxide and hydroxyl radical were recorded particularly in the experimental groups supplemented with 50 and 100 μmol/L EPC. Western blot analysis revealed that supplementation of particularly 100 μmol/L EPC to the semen extender prevented the loss of the cation channel of sperm (CatSper) isoforms 1 and 2, sodium bicarbonate cotransporter (NBC) and protein kinase A (PKA), which play important roles in the process of sperm capacitation. In summary, we may hypothesize that EPC is particularly effective in the stabilization of the sperm membrane during the freeze-thaw process through its ability to quench ROS involved in damage to the membrane lipids and to prevent the loss of membrane channels crucial to initiate the process of sperm capacitation. These attributes of EPC provide an additional layer of protection to spermatozoa exposed to low temperatures, which may be translated into a higher post-thaw structural integrity and functional activity of male gametes.

摘要

表儿茶素(EPC)是一种属于儿茶素家族的类黄酮,它已被描述为一种强大的活性氧(ROS)广谱清除剂和体外精子活力调节剂。在这项研究中,我们评估了 EPC 对冷冻保存牛精子的潜在保护能力。我们专注于传统的质量参数,以及精子的氧化谱与顶体反应模式以及参与顶体反应过程的蛋白质表达谱。精液样本在存在 25、50 或 100μmol/L EPC 的情况下冷冻保存,并与天然精液(阴性对照)以及没有 EPC 冷冻的精液(阳性对照)进行比较。结果发现,EPC 给药后,常规精子质量参数呈剂量依赖性改善,尤其是在精子活力、膜、顶体和 DNA 完整性方面与阳性对照相比。与阳性对照相比,暴露于所有 EPC 剂量的实验组的顶体反应精子比例显著降低。虽然 EPC 对超氧化物的产生没有显著影响,但记录到过氧化氢和羟基自由基的水平显著降低,特别是在补充 50 和 100μmol/L EPC 的实验组中。Western blot 分析表明,在精液稀释液中特别补充 100μmol/L EPC 可防止阳离子通道 CatSper 同工型 1 和 2、碳酸氢钠协同转运蛋白(NBC)和蛋白激酶 A(PKA)的丢失,这些蛋白在精子顶体反应过程中起着重要作用。总之,我们可以假设 EPC 通过其淬灭参与膜脂质损伤的 ROS 的能力以及防止启动精子顶体反应过程的膜通道丢失,在冷冻-解冻过程中特别有效地稳定精子膜。EPC 的这些特性为暴露于低温的精子提供了额外的保护,这可能转化为更高的解冻后结构完整性和雄性配子的功能活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c10/9916467/efd2539b8cd7/ijms-24-02510-g001.jpg

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