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流式细胞生理评估中识别非精子颗粒:一种简单的方法。

Identifying non-sperm particles during flow cytometric physiological assessment: a simple approach.

机构信息

Clinic for Horses, University of Veterinary Medicine Hannover Foundation, Hannover, Germany.

出版信息

Theriogenology. 2010 Apr 15;73(7):995-1000. doi: 10.1016/j.theriogenology.2009.12.006. Epub 2010 Feb 19.

Abstract

Flow cytometry is now being used more frequently to determine sperm functional characteristics during semen assessment for artificial insemination. With this methodology, viable and potentially functional cells are detected as unstained events differentiated from non-sperm events through their light-scattering characteristics. However, it can be shown mathematically that identification of sperm on the basis of light scatter leads to significant overestimation of unstained viable cells and underestimation of responding cells in tests of sperm function (subpopulations expressing different fluorescence patterns). We have developed a simple and cost-efficient flow cytometric approach for identifying non-sperm particles that can be carried out in parallel with functional assessments. Our method is based on the sperm's osmotic intolerance. Diluted in water, lethal osmotic shock causes major damage to the cell membranes, and all sperm will stain with propidium iodide (PI). Particulate material which is not PI-positive can then be quantitatively evaluated by FACS analysis and the results substituted in mathematical equations to provide true values for sperm counts and subpopulations. In practical tests, the percentage of non-sperm particles determined by this technique was closely comparable to the figure obtained either by SYBR14/PI staining or by PI/CFDA staining. As well as being valuable with respect to tests of sperm function, the procedure is also suitable for obtaining accurate sperm counts during routine semen evaluation.

摘要

流式细胞术现在越来越多地用于在人工授精的精液评估中确定精子的功能特征。通过这种方法,可以通过其光散射特性将活的和潜在功能的细胞检测为未染色的事件,与非精子事件区分开来。然而,可以从数学上证明,基于光散射识别精子会导致未染色活细胞的显著高估和精子功能测试中反应细胞的低估(表达不同荧光模式的亚群)。我们开发了一种简单且具有成本效益的流式细胞术方法来识别非精子颗粒,该方法可以与功能评估同时进行。我们的方法基于精子的渗透不耐受性。在水中稀释时,致命的渗透压冲击会对细胞膜造成严重损害,所有精子都会用碘化丙啶(PI)染色。然后可以通过 FACS 分析对非 PI 阳性的颗粒物质进行定量评估,并将结果代入数学方程中,以提供精子计数和亚群的真实值。在实际测试中,通过该技术确定的非精子颗粒的百分比与通过 SYBR14/PI 染色或 PI/CFDA 染色获得的百分比非常接近。除了对精子功能测试有价值外,该方法还适用于在常规精液评估中获得准确的精子计数。

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