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采用改良的精子染色质扩散试验简单测定人类精子DNA片段化

Simple determination of human sperm DNA fragmentation with an improved sperm chromatin dispersion test.

作者信息

Fernández José Luis, Muriel Lourdes, Goyanes Vicente, Segrelles Enrique, Gosálvez Jaime, Enciso María, LaFromboise Marie, De Jonge Christopher

机构信息

Unidad de Investigación, Complejo Hospitalario Universitario Juan Canalejo, As Xubias, A Coruña, Spain.

出版信息

Fertil Steril. 2005 Oct;84(4):833-42. doi: 10.1016/j.fertnstert.2004.11.089.

Abstract

OBJECTIVE

To improve the sperm chromatin dispersion (SCD) test and develop it as a simple kit (Halosperm kit) for the accurate determination of sperm DNA fragmentation using conventional bright-field microscopy.

DESIGN

Method development, comparison, and validation.

SETTING

Medical genetics laboratory, academic biology center, and reproductive medicine centers.

PATIENT(S): Male infertility patients attending the Reproductive Medicine Center. A varicocele patient and a group of nine fertile subjects.

INTERVENTION(S): None.

MAIN OUTCOME MEASURE(S): [1] The quality of chromatin staining in relaxed sperm nuclear halos and tail preservation; [2] SCD scoring reproducibility; [3] comparison with the sperm chromatin structure assay in 45 samples; [4] frequency of sperm with DNA fragmentation after incubation with increasing doses of the nitric oxide donor sodium nitroprusside and in sperm samples for 9 fertile men, 46 normozoospermic patients, 23 oligoasthenoteratozoospermic patients, and a subject with varicocele.

RESULT(S): The sperm nuclei with DNA fragmentation, either spontaneous or induced, do not produce or show very small halos of DNA loop dispersion after sequential incubation in acid and lysis solution. The improved SCD protocol (Halosperm kit) results in better chromatin preservation, therefore highly contrasted halo images can be accurately assessed using conventional bright-field microscopy after Wright staining. Moreover, unlike in the original SCD procedure, the sperm tails are now preserved, making it possible to unequivocally discriminate sperm from other cell types. The chi2 test did not detect significant differences in the mean number of sperm cells with fragmented DNA as scored by four different observers. The intraobserver coefficient of variation for the estimated percentage of spermatozoa with fragmented DNA ranged from 6% to 12%. There was good correlation between the SCD and the sperm chromatin structure assay DNA fragmentation index (intraclass correlation coefficient R: 0.85; percent DNA fragmentation index mean difference: 2.16 significantly higher for SCD). Using the Halosperm kit, a dose-dependent increase in sperm DNA damage after sodium nitroprusside incubation was detected. The percentage of sperm cells with fragmented DNA in the fertile group was 16.3 +/- 6.0, in the normozoospermic group, 27.3 +/- 11.7, and in the oligoasthenoteratozoospermic group, 47.3 +/- 17.3. In the varicocele sample, an extremely high degree of nuclear disruption was detected in the population of sperm cells with fragmented DNA.

CONCLUSION(S): The improved SCD test, developed as the Halosperm kit, is a simple, cost effective, rapid, reliable, and accurate procedure, for routinely assessing human sperm DNA fragmentation in the clinical andrology laboratory.

摘要

目的

改进精子染色质扩散(SCD)试验,并将其开发成一种简单试剂盒(Halosperm试剂盒),用于使用传统明场显微镜准确测定精子DNA片段化情况。

设计

方法开发、比较及验证。

地点

医学遗传学实验室、学术生物学中心及生殖医学中心。

患者

就诊于生殖医学中心的男性不育患者。一名精索静脉曲张患者及一组9名有生育能力的受试者。

干预措施

无。

主要观察指标

[1] 松弛精子核晕中染色质染色质量及尾部保存情况;[2] SCD评分的可重复性;[3] 与45份样本中的精子染色质结构分析进行比较;[4] 用不同剂量一氧化氮供体硝普钠孵育后及在9名有生育能力男性、46名正常精子症患者、23名少弱畸精子症患者及一名精索静脉曲张受试者的精子样本中,DNA片段化精子的频率。

结果

经酸和裂解液顺序孵育后,自发或诱导产生DNA片段化的精子核不会产生或仅显示非常小的DNA环扩散晕。改进后的SCD方案(Halosperm试剂盒)能更好地保存染色质,因此在瑞氏染色后,使用传统明场显微镜可准确评估高对比度的晕图像。此外,与原始SCD程序不同的是,现在精子尾部得以保存,从而能够明确区分精子与其他细胞类型。卡方检验未检测到四名不同观察者对DNA片段化精子细胞平均数评分的显著差异。DNA片段化精子估计百分比的观察者内变异系数在6%至12%之间。SCD与精子染色质结构分析DNA片段化指数之间具有良好相关性(组内相关系数R:0.85;DNA片段化指数平均差异百分比:SCD显著高2.16)。使用Halosperm试剂盒,检测到硝普钠孵育后精子DNA损伤呈剂量依赖性增加。有生育能力组中DNA片段化精子细胞的百分比为16.3±6.0,正常精子症组为27.3±11.7,少弱畸精子症组为47.3±17.3。在精索静脉曲张样本中,在DNA片段化精子细胞群体中检测到极高程度的核破坏。

结论

改进后的SCD试验开发成Halosperm试剂盒后,是一种简单、经济有效、快速、可靠且准确的程序,可用于临床男科学实验室常规评估人类精子DNA片段化情况。

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