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性别预选:对X和Y精子进行高速流式细胞分选以实现最高效率。

Sex preselection: high-speed flow cytometric sorting of X and Y sperm for maximum efficiency.

作者信息

Johnson L A, Welch G R

机构信息

Germplasm and Gamete Physiology Laboratory, U.S. Department of Agriculture, Beltsville, MD 20705, USA.

出版信息

Theriogenology. 1999 Dec;52(8):1323-41. doi: 10.1016/s0093-691x(99)00220-4.

Abstract

Sex preselection that is based on flow-cytometric measurement of sperm DNA content to enable sorting of X- from Y-chromosome-bearing sperm has proven reproducible at various locations and with many species at greater than 90% purity. Offspring of the predetermined sex in both domestic animals and human beings have been born using this technology since its introduction in 1989. The method involves treating sperm with the fluorescent dye, Hoechst 33342, which binds to the DNA and then sorting them into X- and Y-bearing-sperm populations with a flow cytometer/cell sorter modified specifically for sperm. Sexed sperm are then used with differing semen delivery routes such as intra-uterine, intra-tubal, artificial insemination (deep-uterine and cervical), in vitro fertilization and embryo transfer, and intra-cytoplasmic sperm injection (ICSI). Offspring produced at all locations using the technology have been morphologically normal and reproductively capable in succeeding generations. With the advent of high-speed cell sorting technology and improved efficiency of sorting by a new sperm orienting nozzle, the efficiency of sexed sperm production is significantly enhanced. This paper describes development of the these technological improvements in the Beltsville Sexing Technology that has brought sexed sperm to a new level of application. Under typical conditions the high-speed sperm sorter with the orienting nozzle (HiSON) results in purities of 90% of X- and Y-bearing sperm at 6 million sperm per h for each population. Taken to its highest performance level, the HiSON has produced X-bearing-sperm populations at 85 to 90% purity in the production of up to 11 million X-bearing-sperm per h of sorting. In addition if one accepts a lower purity (75 to 80%) of X, nearly 20 million sperm can be sorted per h. The latter represents a 30 to 60-fold improvement over the 1989 sorting technology using rabbit sperm. It is anticipated that with instrument refinements the production capacity can be improved even further. The application of the current technology has led to much wider potential for practical usage through conventional and deep-uterine artificial insemination of many species, especially cattle. It also opens the possibility of utilizing sexed sperm for artificial insemination in swine once low-sperm-dose methods are perfected. Sexed sperm on demand has become a reality through the development of the HiSON system.

摘要

基于精子DNA含量的流式细胞仪测量以实现携带X染色体精子与携带Y染色体精子分选的性别预选,已在不同地点对多种物种得到验证,纯度超过90%。自1989年该技术问世以来,利用此技术已成功繁育出预定性别的家畜和人类后代。该方法包括用荧光染料Hoechst 33342处理精子,该染料与DNA结合,然后用专门为精子改良的流式细胞仪/细胞分选仪将其分选为携带X和Y染色体的精子群体。然后,将分选后的精子用于不同的输精途径,如子宫内、输卵管内、人工授精(子宫深部和宫颈)、体外受精和胚胎移植,以及胞浆内单精子注射(ICSI)。使用该技术在各地繁育出的后代在形态上正常,且后代具有生殖能力。随着高速细胞分选技术的出现以及新型精子定向喷嘴提高了分选效率,分选精子的生产效率得到显著提高。本文描述了贝尔茨维尔性别分选技术的这些技术改进的发展情况,该技术已将分选精子提升到了一个新的应用水平。在典型条件下,配备定向喷嘴的高速精子分选仪(HiSON)每小时可对每个群体的600万个精子进行分选,使携带X和Y染色体精子的纯度达到90%。在最高性能水平下,HiSON在每小时分选多达1100万个携带X染色体精子的过程中,可产生纯度为85%至90%的携带X染色体精子群体。此外,如果接受较低纯度(75%至80%)的X精子,每小时可分选近2000万个精子。与1989年使用兔精子的分选技术相比,后者提高了30至60倍。预计随着仪器的改进,生产能力还可进一步提高。当前技术的应用通过对许多物种(尤其是牛)进行常规和子宫深部人工授精,极大地拓宽了实际应用的潜力。一旦低精子剂量方法完善,利用分选精子进行猪的人工授精也成为可能。通过HiSON系统的发展,按需提供分选精子已成为现实。

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