Institute for Reproduction of Farm Animals Schönow, Bernauer Allee 10, 16321, Bernau, Germany.
Institute for Reproduction of Farm Animals Schönow, Bernauer Allee 10, 16321, Bernau, Germany.
Theriogenology. 2019 Oct 1;137:88-92. doi: 10.1016/j.theriogenology.2019.05.042. Epub 2019 May 31.
Reducing the number of spermatozoa per artificial insemination (AI) dose and managing semen in ways to ensure greater quality at the same time represents current challenges with sperm processing in pig AI centers. Based on a multi-year comparative analysis of process steps in different pig AI centers, and complementary experimental studies under standardized laboratory conditions, current process standards for the preservation of boar semen have been updated and new ones developed. Currently, these standards represent an integral part of the quality assurance of 29 European pig AI centers in ten different organizations in Germany, Switzerland and Austria. Improvement of hygiene management and guidelines for prudent use of antibiotics have become key issues. Furthermore, new quality control tools have been implemented in the processing and transport of boar semen: e.g. refractometry as an easy-to-use tool to estimate extender osmolarity and 'mobile sensing' apps for continuous monitoring of various environmental parameters. Moreover, based on a series of experiments under laboratory and field conditions, guidelines for optimizing the dilution process, and time and temperature management during boar semen processing, have been developed and implemented. Similarly, recommendations for the handling of semen doses during storage have been renewed. Over the years, the efficiency of the quality assurance system has been reflected by a decrease of bacterial contamination and a concomitant increase in the quality of semen doses. In conclusion, science-based quality assurance is an effective way to improve the production performance in pig AI centers, resulting in high quality and economically-priced semen for pig producers. Increasing knowledge of sperm physiology together with computational and technical innovations will continue to develop and modify quality assurance concepts in the future.
减少人工授精(AI)剂量中的精子数量,并以确保同时提高精液质量的方式来处理精液,这代表了当前猪 AI 中心在精子处理方面面临的挑战。基于对不同猪 AI 中心的多个流程步骤进行的多年比较分析,以及在标准化实验室条件下进行的补充实验研究,目前已经更新并制定了新的猪精液保存工艺标准。目前,这些标准是德国、瑞士和奥地利的十个不同组织的 29 个欧洲猪 AI 中心质量保证的一个组成部分。改善卫生管理和谨慎使用抗生素的准则已成为关键问题。此外,在猪精液的处理和运输过程中已经实施了新的质量控制工具:例如折光仪,作为一种易于使用的工具来估计稀释液的渗透压,以及用于持续监测各种环境参数的“移动感应”应用程序。此外,根据一系列在实验室和现场条件下进行的实验,制定并实施了优化稀释过程以及猪精液处理过程中时间和温度管理的指南。同样,对精液储存期间精液剂量处理的建议也进行了更新。多年来,质量保证体系的效率反映在细菌污染的减少和精液质量的提高上。总之,基于科学的质量保证是提高猪 AI 中心生产性能的有效方法,可为养猪户提供高质量且经济实惠的精液。随着对精子生理学的了解不断增加,以及计算和技术创新,未来将继续开发和修改质量保证概念。