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The Impact of Sperm Metabolism during In Vitro Storage: The Stallion as a Model

机译:体外储存过程中精子代谢的影响:种马作为模型

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摘要

In vitro sperm storage is a necessary part of many artificial insemination or in vitro fertilization regimes for many species, including the human and the horse. In many situations spermatozoa are chilled to temperatures between 4 and 10°C for the purpose of restricting the metabolic rate during storage, in turn, reducing the depletion of ATP and the production of detrimental by-products such as reactive oxygen species (ROS). Another result of lowering the temperature is that spermatozoa may be “cold shocked” due to lipid membrane phase separation, resulting in reduced fertility. To overcome this, a method of sperm storage must be developed that will preclude the need to chill spermatozoa. If a thermally induced restriction-of-metabolic-rate strategy is not employed, ATP production must be supported while ameliorating the deleterious effects of ROS. To achieve this end, an understanding of the nature of energy production by the spermatozoa of the species of interest is essential. Human spermatozoa depend predominantly on glycolytic ATP production, producing significantly less ROS than oxidative phosphorylation, with the more efficient pathway predominantly employed by stallion spermatozoa. This review provides an overview of the implications of sperm metabolism for in vitro sperm storage, with a focus on ambient temperature storage in the stallion.
机译:对于许多物种,包括人和马,体外精子储存是许多人工授精或体外受精方案的必要组成部分。在许多情况下,为了限制储存过程中的代谢速率,将精子冷却至4至10°C之间的温度,进而减少了ATP的消耗和有害副产物(如活性氧(ROS))的产生。降低温度的另一个结果是,由于脂质膜相分离,精子可能被“冷激”,导致生育力下降。为了克服这个问题,必须开发一种精子储存方法,以排除冷冻精子的需要。如果不采用热诱导的代谢速率限制策略,则在改善ROS的有害作用的同时必须支持ATP的产生。为了达到这个目的,对感兴趣物种的精子产生能量的性质的理解是必不可少的。人精子主要依赖糖酵解ATP的产生,比氧化磷酸化产生的ROS少得多,而种马精子主要采用更有效的途径。这篇综述概述了精子代谢对体外精子储存的影响,重点是种马中的环境温度储存。

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