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使用Felix™ 分离精子在选择低DNA损伤细胞方面优于传统的密度梯度离心制备方法。

Spermatozoa isolation with Felix™ outperforms conventional density gradient centrifugation preparation in selecting cells with low DNA damage.

作者信息

Villeneuve Pauline, Saez Fabrice, Hug Elisa, Chorfa Areski, Guiton Rachel, Schubert Benoit, Force André, Drevet Joël R

机构信息

GReD Institute, Université Clermont Auvergne-Inserm U1103-CNRS UMR6293, Faculté de Médecine, CRBC, Clermont-Ferrand, France.

Eurofins Biomnis-Institut Rhônalpin, Médicentre de la clinique du Val d'Ouest, Ecully, France.

出版信息

Andrology. 2023 Nov;11(8):1593-1604. doi: 10.1111/andr.13384. Epub 2023 Jan 18.

DOI:10.1111/andr.13384
PMID:36629014
Abstract

BACKGROUND

The optimization of spermatozoa preparation techniques in order to obtain cell fractions enriched with structurally and functionally "superior" spermatozoa is a key objective of the assisted reproduction industry.

OBJECTIVES

The purpose of this study was to evaluate a recent development of an electrophoretic spermatozoa separation device (Felix™, Memphasys Ltd, Sydney, Australia) and to compare its performance with conventional spermatozoa preparation by density gradient centrifugation (DGC). Particular attention was paid to the evaluation of sperm DNA/nuclear integrity.

MATERIALS & METHODS: A cohort of 29 human semen samples was studied. Semen samples were analyzed fresh and after DGC or Felix™ preparation. Semen parameters monitored included sample volume, sperm count, total motility, progressive motility, sperm DNA fragmentation using the Sperm Chromatin Structure Assay and sperm DNA oxidation.

RESULTS

Spermatozoa preparation with Felix™ resulted in significantly improved spermatozoa fractions with higher progressive motility, lower sperm DNA fragmentation, and lower sperm DNA oxidation compared with raw semen and DGC-prepared spermatozoa.

DISCUSSION & CONCLUSION: The data collected in this study support the preparation of spermatozoa by the Felix™ system as it allows selection of spermatozoa with the highest progressive motility as well as the lowest nuclear/DNA damage. These improved sperm parameters, along with the fact that the Felix™ separation process is very fast and highly standardized, should be of great interest to the assisted reproduction technologies industry.

摘要

背景

优化精子制备技术以获得富含结构和功能“优质”精子的细胞组分是辅助生殖行业的一个关键目标。

目的

本研究的目的是评估一种电泳精子分离装置(Felix™,Memphasys Ltd,悉尼,澳大利亚)的最新进展,并将其性能与传统的密度梯度离心(DGC)精子制备方法进行比较。特别关注精子DNA/核完整性的评估。

材料与方法

研究了29份人类精液样本。精液样本在新鲜时以及经过DGC或Felix™制备后进行分析。监测的精液参数包括样本体积、精子计数、总活力、前向运动能力、使用精子染色质结构分析的精子DNA片段化以及精子DNA氧化。

结果

与未处理精液和DGC制备的精子相比,使用Felix™制备精子可显著提高精子组分的前向运动能力,降低精子DNA片段化和精子DNA氧化。

讨论与结论

本研究收集的数据支持使用Felix™系统制备精子,因为它能够选择前向运动能力最高且核/DNA损伤最低的精子。这些改善的精子参数,以及Felix™分离过程非常快速且高度标准化这一事实,应该会引起辅助生殖技术行业的极大兴趣。

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