Biotechnology of Animal and Human Reproduction (TechnoSperm), Institute of Food and Agricultural Technology, University of Girona, ES-17003, Girona, Spain.
Unit of Cell Biology, Department of Biology, Faculty of Sciences, University of Girona, ES-17003, Girona, Spain.
Commun Biol. 2023 Mar 30;6(1):344. doi: 10.1038/s42003-023-04715-3.
Whether basal metabolic activity in sperm has any influence on their fertilising capacity has not been explored. Using the pig as a model, the present study investigated the relationship of energetic metabolism with sperm quality and function (assessed through computer-assisted sperm analysis and flow cytometry), and fertility (in vitro fertilisation (IVF) outcomes). In semen samples from 16 boars, levels of metabolites related to glycolysis, ketogenesis and Krebs cycle were determined through a targeted metabolomics approach using liquid chromatography-tandem mass spectrometry. High-quality sperm are associated to greater levels of glycolysis-derived metabolites, and oocyte fertilisation and embryo development are conditioned by the sperm metabolic status. Interestingly, glycolysis appears to be the preferred catabolic pathway of the sperm giving rise to greater percentages of embryos at day 6. In conclusion, this study shows that the basal metabolic activity of sperm influences their function, even beyond fertilisation.
精子的基础代谢活动是否对其受精能力有影响尚未得到探索。本研究以猪为模型,研究了能量代谢与精子质量和功能(通过计算机辅助精子分析和流式细胞术评估)以及生育力(体外受精(IVF)结果)的关系。在 16 头公猪的精液样本中,通过使用液相色谱-串联质谱法的靶向代谢组学方法,确定了与糖酵解、酮体生成和克雷布斯循环相关的代谢物水平。高质量的精子与更高水平的糖酵解衍生代谢物有关,卵子受精和胚胎发育取决于精子的代谢状态。有趣的是,糖酵解似乎是精子首选的分解代谢途径,导致第 6 天胚胎的比例更高。总之,这项研究表明,精子的基础代谢活动会影响其功能,甚至在受精之后。