通过流式细胞仪对精子进行聚类检测,可提供比传统评估更多的信息:以抗渗透压能力为例。

IF 2.1
Julian Valencia, Sebastián Bonilla-Correal, Elisabeth Pinart, Sergi Bonet, Marc Yeste
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引用次数: 0

摘要

背景 传统的精子质量检测可能不足以预测特定射精的受精能力,因此需要快速、可靠和灵敏的检测来衡量精子功能。本研究旨在探讨基于流式细胞术变量的聚类分析方法能否提供更多有关精子功能的信息。方法 将精子暴露于等渗(300mOsm/kg)或低渗(180mOsm/kg)培养基中 5 分钟和 20 分钟,然后用 SYBR14 和碘化丙啶(PI)染色。根据流式细胞仪的点阵图,精子被分为存活的(SYBR14+ /PI- )或质膜发生不同程度改变的(SYBR14+ /PI+ 和 SYBR14- /PI+ )。此外,还记录了电子体积(EV)、侧散射(SS)、绿色(FL1)和红色(FL3)荧光的单个值,并通过聚类分析对精子细胞进行分类。这种方法有两种策略。第一种基于 EV 和 FL3/FL1 商数,第二种基于 EV、SS 和 FL3/FL1 商数。主要结果 这两种方法都识别出了三个以上的精子种群。在第一种策略中,EV 在无膜精子和有膜精子之间没有差异,但有显著差异(P P P 结论 基于流式细胞术变量的聚类分析比传统评估提供了更多有关精子功能的信息。意义 将流式细胞仪与聚类分析相结合是一种更可靠的精子评估方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clustering of spermatozoa examined through flow cytometry provides more information than the conventional assessment: a resilience to osmotic stress example.

Context Conventional sperm quality tests may not be sufficient to predict the fertilising ability of a given ejaculate; thus, rapid, reliable and sensitive tests are necessary to measure sperm function. Aims This study sought to address whether a cluster analysis approach based on flow cytometry variables could provide more information about sperm function. Methods Spermatozoa were exposed to either isotonic (300mOsm/kg) or hypotonic (180mOsm/kg) media for 5 and 20min, and were then stained with SYBR14 and propidium iodide (PI). Based on flow cytometry dot plots, spermatozoa were classified as either viable (SYBR14+ /PI- ) or with different degrees of plasma membrane alteration (SYBR14+ /PI+ and SYBR14- /PI+ ). Moreover, individual values of electronic volume (EV), side scattering (SS), green (FL1) and red (FL3) fluorescence were recorded and used to classify sperm cells through cluster analysis. Two strategies of this approach were run. The first one was based on EV and the FL3/FL1 quotient, and the second was based on EV, SS and the FL3/FL1 quotient. Key results The two strategies led to the identification of more than three sperm populations. In the first strategy, EV did not differ between membrane-intact and membrane-damaged sperm, but it was significantly (P P P Conclusions Cluster analysis based on flow cytometry variables provides more information about sperm function than conventional assessment does. Implications Combining flow cytometry with cluster analysis is a more robust approach for sperm evaluation.

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