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流式细胞术在精子性别鉴定方面的进展。

Advances in flow cytometry for sperm sexing.

作者信息

Sharpe J C, Evans K M

机构信息

Photara Technologies Limited, Hamilton 3216, New Zealand.

出版信息

Theriogenology. 2009 Jan 1;71(1):4-10. doi: 10.1016/j.theriogenology.2008.09.021. Epub 2008 Oct 23.

Abstract

This review presents the key technological developments that have been implemented in the 20 years since the first reports of successful measurement, sorting, insemination and live births using flow cytometry as a proven physical sperm separation technique. Since the first reports of sexed sperm, flow technology efforts have been largely focused on improving sample throughput by increasing the rate at which sperm are introduced to the sorter, and on improving measurement resolution, which has increased the proportion of cells that can be reliably measured and sorted. Today, routine high-purity sorting of X- or Y-chromosome-bearing sperm can be achieved at rates up to 8000 s(-1) for an input rate of 40,000 X- and Y-sperms(-1). With current protocols, straws of sex-sorted sperm intended for use in artificial insemination contain approximately 2 x 10(6)sperm. The sort rate of 8000 sperms(-1) mentioned above corresponds to a production capacity of approximately 14 straws of each sex per hour per instrument.

摘要

本综述介绍了自首次报道使用流式细胞术作为一种成熟的物理精子分离技术成功进行测量、分选、授精和活产以来20年里所实现的关键技术发展。自从首次报道有性别的精子以来,流式技术的努力主要集中在通过提高精子引入分选仪的速率来提高样品通量,以及提高测量分辨率,这增加了能够可靠测量和分选的细胞比例。如今,对于40000个X和Y精子/秒的输入速率,可实现高达8000个/秒的携带X或Y染色体精子的常规高纯度分选。按照目前的方案,用于人工授精的性别分选精子细管含有约2×10⁶个精子。上述8000个精子/秒的分选速率对应于每台仪器每小时约生产14管每种性别的精子。

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