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底物可用性和线粒体功能障碍对可育犬氧化代谢和精子活力的影响。

Effects of substrate availability and mitochondrial disruption on oxidative metabolism and sperm motility in fertile dogs.

机构信息

Department of Anatomy, Physiology and Cell Biology, School of Veterinary Medicine, University of California, Davis, California, USA.

Guide Dogs for the Blind, San Rafael, California, USA.

出版信息

Reprod Domest Anim. 2024 Jul;59(7):e14664. doi: 10.1111/rda.14664.

Abstract

In several mammalian species, the measurement of mitochondrial oxygen consumption (MITOX) under different metabolic conditions has demonstrated a positive correlation with sperm motility and may be a sensitive indicator of mitochondrial health. In general, the maintenance of sperm motility and many key sperm functions and fertilizing events are heavily energy-dependent processes, and some species-specific substrate preferences exist. Although canine sperm have been known to undergo capacitation and maintain motility with supplementation of a wide range of energy substrates, the relationship between mitochondrial function, and the maintenance of oxidative metabolism and sperm motility remain unclear. The objective of this study was to explore the metabolic flexibility of canine sperm, and to investigate the relationship between mitochondrial function, and maintenance of motility under differing nutrient conditions. We explored substrate preferences and the bioenergetics underlying maintenance of canine sperm motility by monitoring mitochondrial oxidative function and sperm kinematics in the presence of mitochondrial effector drug treatments: FCCP, antimycin (ANTI), and oligomycin (OLIGO). We hypothesized that canine sperm possess the ability to use compensatory pathways and utilize diverse nutrient sources in the maintenance of motility. Oxygen consumption (change in pO, oxygen partial pressure) and sperm kinematics (CASA) were measured concurrently (t0-t30) to assess the relationship between oxidative metabolism and maintenance of sperm motility in dogs. Four media were tested: containing glucose, lactate, and pyruvate (GLP), containing glucose (G), fructose (F), or lactate and pyruvate (LP). In the absence of pharmacological inhibition of the electron transport chain, energetic substrate had no effect on sperm kinematics in fertile dogs. Following mitochondrial disruption by ANTI and OLIGO, mitochondrial oxygen consumption was negatively correlated with several sperm motility parameters in GLP, G, F, and LP media. In every media, FCCP treatment quickly induced significantly higher oxygen consumption than in untreated sperm, and spare respiratory capacity, the maximal inducible oxidative metabolism, was high. With respiratory control ratios RCR >1 there was no indication of bioenergetic dysfunction in any media type, indicating that sperm mitochondria of fertile dogs have a high capacity for substrate oxidation and ATP turnover regardless of substrate. Our results suggest MITOX assessment is a valuable tool for assessing mitochondrial functionality, and that canine sperm employ flexible energy management systems which may be exploited to improve sperm handling and storage.

摘要

在几种哺乳动物中,在不同代谢条件下测量线粒体耗氧量 (MITOX) 与精子运动能力呈正相关,并且可能是线粒体健康的敏感指标。一般来说,精子运动能力的维持以及许多关键的精子功能和受精事件都严重依赖能量,并且存在一些物种特异性的底物偏好。尽管已经知道犬精子在补充广泛的能量底物后可以进行顶体反应并保持运动能力,但线粒体功能与氧化代谢和精子运动能力维持之间的关系仍不清楚。本研究的目的是探索犬精子的代谢灵活性,并研究在不同营养条件下线粒体功能与运动能力维持之间的关系。我们通过监测线粒体效应药物处理(FCCP、antimycin (ANTI) 和 oligomycin (OLIGO))下的线粒体氧化功能和精子运动学,来探索犬精子的底物偏好和维持运动能力的生物能学基础。我们假设犬精子具有利用补偿途径和维持运动能力的多种营养来源的能力。我们同时测量了耗氧量(pO,氧分压变化)和精子运动学(CASA)(t0-t30),以评估氧化代谢与犬精子运动能力维持之间的关系。测试了四种培养基:含有葡萄糖、乳酸盐和丙酮酸 (GLP)、含有葡萄糖 (G)、果糖 (F) 或乳酸盐和丙酮酸 (LP)。在没有电子传递链药理学抑制的情况下,在有生育能力的狗中,能量底物对精子运动学没有影响。在用 ANTI 和 OLIGO 破坏线粒体后,GLP、G、F 和 LP 培养基中的线粒体耗氧量与几个精子运动参数呈负相关。在每种培养基中,FCCP 处理会迅速诱导未处理精子的耗氧量显著增加,并且备用呼吸能力(最大诱导氧化代谢)很高。当呼吸控制比 RCR>1 时,在任何培养基类型中都没有表明存在生物能学功能障碍,这表明无论底物如何,有生育能力的狗的精子线粒体都具有很高的底物氧化和 ATP 转换能力。我们的结果表明,MITOX 评估是评估线粒体功能的有用工具,并且犬精子采用灵活的能量管理系统,这可能被利用来改善精子处理和储存。

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