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超声切割冷冻精液细管以优化精子用于体外受精的效果

Ultrasonic Cutting of Frozen Semen Straws to Optimize the Use of Spermatozoa for In Vitro Fertilization.

作者信息

Kim Sung Woo, Lee Jae-Yeong, Kim Bongki, Kim Chan-Lan, Hwang In-Sul, Ko Yeoung-Gyu, Lee Sung-Soo

机构信息

Animal Genetic Resource Research Center, National Institute of Animal Science, RDA, Hamyang 50000, Korea.

Department of Animal Resources Science, Kongju National University, Yesan 32439, Korea.

出版信息

Animals (Basel). 2020 Nov 19;10(11):2152. doi: 10.3390/ani10112152.

Abstract

The objective of the present study was to establish conditions for using technology that can potentially enhance the efficiency of bovine embryos derived from in vitro fertilization (IVF) with frozen semen. Frozen semen from selected bulls can be stored indefinitely in liquid nitrogen as genetic resources; however, these resources are considered consumable because they cannot be regenerated. Therefore, to optimize the utilization of frozen semen, as many oocytes as possible should be fertilized with one straw. However, a sufficient number of prepared oocytes might not be available for one experiment, which can limit the use of the total spermatozoa population. Thus, an economical method for producing embryos needs to be established by optimizing technology for transplantable embryos. In this study, the utilization of frozen semen was increased by dividing the straw with an ultrasonic cutter. The post-thaw survival rate of uncut straws from Korean Proven Bulls did not differ from that of half cuttings. When ultrasonic cutting was applied to frozen semen, spermatozoa could be prepared for IVF trials at least four times, and blastocysts were produced. Therefore, cutting frozen semen with an ultrasonic cutter represents a potentially useful tool to expand genetic resources from excellent breeding stocks. This approach could also be valuable in the field of IVF of endangered species or rare breeds for their preservation, as well as in ovum pick-up (OPU) techniques.

摘要

本研究的目的是建立使用技术的条件,该技术有可能提高体外受精(IVF)冷冻精液来源的牛胚胎的效率。来自选定公牛的冷冻精液可以作为遗传资源无限期地保存在液氮中;然而,这些资源被视为消耗品,因为它们无法再生。因此,为了优化冷冻精液的利用,一根细管的精液应使尽可能多的卵母细胞受精。然而,一次实验可能没有足够数量的已准备好的卵母细胞,这可能会限制整个精子群体的使用。因此,需要通过优化可移植胚胎的技术来建立一种经济的胚胎生产方法。在本研究中,通过用超声切割器分割细管来提高冷冻精液的利用率。韩国经认证公牛未切割细管的解冻后存活率与半切割细管的解冻后存活率没有差异。当对冷冻精液应用超声切割时,精子可用于至少四次IVF试验,并产生了囊胚。因此,用超声切割器切割冷冻精液是一种潜在有用的工具,可用于扩大优良种畜的遗传资源。这种方法在濒危物种或稀有品种的体外受精保存领域以及采卵(OPU)技术中也可能具有价值。

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