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公羊精子的获能促进能量代谢和水通道蛋白3的变化,并受个体睾酮水平变化的影响。

Capacitation of ram spermatozoa promotes changes in energy metabolism and aquaporin 3 and is affected by individual testosterone variations.

作者信息

Peris-Frau Patricia, Sanchez-Rodriguez Ana, Velázquez Rosario, Toledano-Díaz Adolfo, Castaño Cristina, Roldan Eduardo R S, Santiago-Moreno Julián

机构信息

Departament of Animal Reproduction, National Institute for Agricultural and Food Research and Technology (CSIC), Madrid, Spain.

Department of Biodiversity and Evolutionary Biology, National Museum of Natural Sciences (CSIC), Madrid, Spain.

出版信息

Andrology. 2025 May;13(4):921-933. doi: 10.1111/andr.13756. Epub 2024 Sep 6.

Abstract

BACKGROUND

Recently, the metabolic pathways involved in energy production and the role of aquaglyceroporins in capacitation-associated events have been studied in humans and mice. However, little is known about these in ram spermatozoa.

OBJECTIVE

The present study investigated bioenergetic and aquaglyceroporin 3 variations during in vitro capacitation of ram spermatozoa. In addition, differences in testosterone levels between males were examined to determine their influence on capacitation-like changes.

MATERIALS AND METHODS

Spermatozoa obtained from nine rams (ejaculates = 36) were incubated for 180 min in three different media (control, capacitating, and aquaglyceroporin-inhibitor media) at 38.5°C. At 0 and 180 min of incubation in each medium, sperm viability, kinetics, chlortetracycline patterns, adenosine triphosphate concentration, lactate excretion (final subproduct of glycolysis), and immunolocalization of aquaporin 3 were evaluated.

RESULTS

The increment of the capacitated spermatozoa-chlortetracycline pattern and the hyperactivated-like movement characterized by the highest curvilinear velocity and amplitude of lateral head displacement and the lowest linearity was only recorded after 180 min in the capacitating medium. At this time and conditions, adenosine triphosphate content and lactate excretion decreased, whereas the aquaglyceroporin 3 location in the midpiece and principal piece increased compared to 0 min. Such changes were not observed in the control medium over time. Incubation in the aquaglyceroporin-inhibitor medium for 180 min reduced drastically sperm motility and adenosine triphosphate content compared to the other media. Testosterone analysis revealed a significant individual variability, which was also present in all sperm parameters evaluated. Furthermore, testosterone was negatively correlated with adenosine triphosphate content but positively correlated with lactate excretion levels, sperm viability, motility, capacitated sperm-chlortetracycline pattern, and aquaglyceroporin 3 immunolabeling in the midpiece and principal piece.

CONCLUSION

Despite individual differences, capacitation of ram spermatozoa increases adenosine triphosphate consumption, energy metabolism, and aquaglyceroporin 3 location in the midpiece and principal piece, which seems to be related to the acquisition of hyperactivated-like motility. Furthermore, testosterone levels may serve as a valuable tool to select those males with a greater sperm metabolism rate and fertilizing capacity.

摘要

背景

最近,已经在人类和小鼠中研究了能量产生所涉及的代谢途径以及水甘油通道蛋白在获能相关事件中的作用。然而,关于公羊精子中的这些情况却知之甚少。

目的

本研究调查了公羊精子体外获能过程中的生物能量学和水甘油通道蛋白3的变化。此外,还检测了雄性之间睾酮水平的差异,以确定其对类获能变化的影响。

材料与方法

从9只公羊获取精子(射精样本 = 36份),在38.5°C下于三种不同培养基(对照、获能和水甘油通道蛋白抑制剂培养基)中孵育180分钟。在每种培养基孵育0和180分钟时,评估精子活力、动力学、金霉素染色模式、三磷酸腺苷浓度、乳酸排泄(糖酵解的最终副产物)以及水通道蛋白3的免疫定位。

结果

仅在获能培养基中孵育180分钟后,才记录到获能精子的金霉素染色模式增加以及以最高曲线速度、头部横向位移幅度和最低线性度为特征的超活化样运动。此时在此条件下,三磷酸腺苷含量和乳酸排泄减少,而与0分钟相比,水甘油通道蛋白3在中段和主段的定位增加。随着时间推移,在对照培养基中未观察到此类变化。与其他培养基相比,在水甘油通道蛋白抑制剂培养基中孵育180分钟会大幅降低精子活力和三磷酸腺苷含量。睾酮分析显示存在显著的个体差异,在所有评估的精子参数中也都存在。此外,睾酮与三磷酸腺苷含量呈负相关,但与乳酸排泄水平、精子活力、运动性、获能精子的金霉素染色模式以及中段和主段的水甘油通道蛋白3免疫标记呈正相关。

结论

尽管存在个体差异,但公羊精子的获能会增加三磷酸腺苷消耗、能量代谢以及水甘油通道蛋白3在中段和主段的定位,这似乎与超活化样运动的获得有关。此外,睾酮水平可能是选择精子代谢率和受精能力更强的雄性的有价值工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/008d/12006880/0d2eadaaf3c3/ANDR-13-921-g002.jpg

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