Use of specific mitochondrial complex inhibitors to investigate mitochondrial involvement on horse sperm motility and ROS production

寡霉素 精子 运动性 线粒体 抗霉素A 精子活力 氧化磷酸化 ATP合酶 生物 线粒体通透性转换孔 活性氧 线粒体ROS 线粒体呼吸链 孵化 氧化应激 化学 生物化学 细胞生物学 细胞凋亡 ATP酶 植物 程序性细胞死亡
作者
Elisa Giaretta,Beatrice Mislei,Felipe Martínez‐Pastor,Salvatore Nesci,Marcella Spinaci,Giovanna Galeati,Chiara Nerozzi,Gaetano Mari,Carlo Tamanini,Diego Bucci
出处
期刊:Research in Veterinary Science [Elsevier BV]
卷期号:147: 12-19 被引量:6
标识
DOI:10.1016/j.rvsc.2022.03.017
摘要

Equine spermatozoa highly rely on oxidative phosphorylation for their energy management. The present work aimed to characterize the role of mitochondria on horse sperm motility and ROS production by incubating spermatozoa with specific inhibitors of the different mitochondrial complexes. Equine spermatozoa were incubated 1 h and 3 h at 37 °C with: complex I inhibitor rotenone (5 μM, ROT), complex II inhibitor dimethyl-malonate (10 mM, DMM), complex III inhibitor antimycin A (1.8 μM, ANTI), the uncoupling agent carbonyl cyanide m-chlorophenyl hydrazine (5 μM, CCCP), ATP synthase inhibitor oligomycin (5 μM, OLIGO), and 2 μL vehicle DMSO (control, CTL). Samples were analyzed for sperm motility and for mitochondrial membrane potential (MMP), mitochondrial integrity, mitochondrial O2•- production, and cytoplasmic H2O2. A multivariate analysis was performed on the data. CCCP caused a pronounced MMP reduction at both time points while ROT and ANTI showed the same effect at 3 h. All treatments at 3 h incubation significantly reduced the percentage of sperm with early changes in membrane permeability with active mitochondria. The H2O2 production of live cells was low at 1 h incubation in all treatments; after 3 h a slight decrease in the percentage of low-H2O2 producing cells was recorded. All treatments, except DMM, induced a significant decline in sperm motility and kinematics and modified the pattern of sperm subpopulations. The effect of DMM was evident only after 3 h, increasing the percentage of slow sperm subpopulation. In conclusion, the disruption of mitochondrial integrity induces an increase of mitochondrial ROS production that could be detrimental for cell function and survivior.

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