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响应细胞比例较小时趋化性的分析——应用于哺乳动物精子引导

Analysis of chemotaxis when the fraction of responsive cells is small--application to mammalian sperm guidance.

作者信息

Gakamsky Anna, Schechtman Edna, Caplan S Roy, Eisenbach Michael

机构信息

Department of Biological Chemistry, The Weizmann Institute of Science, Rehovot, Israel.

出版信息

Int J Dev Biol. 2008;52(5-6):481-7. doi: 10.1387/ijdb.072520ag.

Abstract

The detection of chemotaxis-related changes in the swimming behavior of mammalian spermatozoa in a spatial chemoattractant gradient has hitherto been an intractable problem. The difficulty is that the fraction of responsive cells in the sperm population is very small and that the large majority of the cells, though non-responsive, are motile too. Assessment of the chemotactic effects in a spatial gradient is also very sensitive to the quality of sperm tracking. To overcome these difficulties we propose a new approach, based on the analysis of the distribution of instantaneous directionality angles made by spermatozoa in a spatial gradient versus a no-gradient control. Although the use of this parameter does not allow identification of individual responding cells, it is a reliable measure of directionality, independent of errors in cell tracking caused by cell collisions, track crossings, and track splitting. The analysis identifies bias in the swimming direction of a population relative to the gradient direction. It involves statistical chi2 tests of the very large sample of measured angles, where the critical chi2 values are adjusted to the sample size by the bootstrapping procedure. The combination of the newly measured parameter and the special analysis provides a highly sensitive method for the detection of a chemotactic response, even a very small one.

摘要

迄今为止,检测哺乳动物精子在空间趋化剂梯度中游泳行为的趋化相关变化一直是个棘手的问题。困难在于精子群体中响应细胞的比例非常小,而且绝大多数细胞虽然无反应,但也具有运动能力。在空间梯度中评估趋化作用对精子追踪的质量也非常敏感。为克服这些困难,我们提出一种新方法,该方法基于对精子在空间梯度中与无梯度对照相比所形成的瞬时方向性角度分布的分析。虽然使用此参数无法识别单个响应细胞,但它是一种可靠的方向性度量,不受细胞碰撞、轨迹交叉和轨迹分裂导致的细胞追踪误差影响。该分析可识别群体游泳方向相对于梯度方向的偏差。它涉及对大量测量角度样本进行统计卡方检验,其中临界卡方值通过自助法程序根据样本大小进行调整。新测量参数与特殊分析相结合,为检测趋化反应提供了一种高度灵敏的方法,即使是非常小的趋化反应也能检测到。

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