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HVCN1 but Not Potassium Channels Are Related to Mammalian Sperm Cryotolerance

机译:HVCN1但不是钾通道与哺乳动物精子冷冻机有关

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摘要

Little data exist about the physiological role of ion channels during the freeze–thaw process in mammalian sperm. Herein, we determined the relevance of potassium channels, including SLO1, and of voltage-gated proton channels (HVCN1) during mammalian sperm cryopreservation, using the pig as a model and through the addition of specific blockers (TEA: tetraethyl ammonium chloride, PAX: paxilline or 2-GBI: 2-guanidino benzimidazole) to the cryoprotective media at either 15 °C or 5 °C. Sperm quality of the control and blocked samples was performed at 30- and 240-min post-thaw, by assessing sperm motility and kinematics, plasma and acrosome membrane integrity, membrane lipid disorder, intracellular calcium levels, mitochondrial membrane potential, and intracellular O2−⁻ and H2O2 levels. General blockade of K+ channels by TEA and specific blockade of SLO1 channels by PAX did not result in alterations in sperm quality after thawing as compared to control samples. In contrast, HVCN1-blocking with 2-GBI led to a significant decrease in post-thaw sperm quality as compared to the control, despite intracellular O2−⁻ and H2O2 levels in 2-GBI blocked samples being lower than in the control and in TEA- and PAX-blocked samples. We can thus conclude that HVCN1 channels are related to mammalian sperm cryotolerance and have an essential role during cryopreservation. In contrast, potassium channels do not seem to play such an instrumental role.
机译:哺乳动物精子冻融过程中离子通道的生理作用存在很少的数据。在此,我们确定钾通道的相关性,包括SLO1和电压门控质子通道(HVCN1)在哺乳动物精液冷冻保存期间,使用猪作为模型并通过添加特异性阻滞剂(茶:四乙基氯化铵,PAX: Paxilline或2-GBI:2-胍基苯并咪唑)在15℃或5℃下的冷冻保护介质。通过评估精子运动和运动学,血浆和血糖组膜完整性,血浆脂肪紊乱,细胞内钙水平,线粒体膜潜力和细胞内O2 - 在解冻后30-140分钟内进行控制和阻断样品的精子质量。 ⁻和h2O2水平。与对照样品相比,通过PAX通过茶和特定封锁的SLO1通道的茶和特定封锁的通道和特定封锁的通道不会导致精子质量的改变。相比之下,与对照相比,HVCN1阻断导致后解冻后精子质量的显着降低,尽管在2-GBI封闭样品中的细胞内O2-β和H2O2水平低于对照和茶叶 - 和pax阻塞样品。因此,我们可以得出结论,HVCN1通道与哺乳动物精子冷冻机有关,并且在冷冻保存期间具有重要作用。相比之下,钾渠道似乎并不扮演这种乐器角色。

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