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Magnetic-activated cell sorting before density gradient centrifugation improves recovery of high-quality spermatozoa

机译:密度梯度离心前的磁性活性细胞分选改善了高品质精子的恢复

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摘要

Recent studies have evaluated the use of magnetic-activated cell sorting (MACS) to reduce apoptotic spermatozoa and improve sperm quality. However, the efficiency of using MACS alone, before or after sperm processing by density gradient centrifugation (DGC) has not yet been established. The purpose of this study is to determine the optimal protocol of MACS in assisted reproduction techniques (ART). Thus, we compared sperm quality obtained by DGC alone (DGC), DGC followed by MACS (DGC-MACS), MACS followed by DGC (MACS-DGC), and MACS alone (MACS), and found that the combined methods (MACS-DGC and DGC-MACS) led to retrieval of less spermatozoa with fragmented DNA compared to the single protocols. However, MACS-DGC protocol led to a significantly higher percentage of spermatozoa with progressive motility and normal morphology than DGC-MACS protocol. These findings suggest the potential clinical value of using MACS-DGC to improve sperm quality in seminal preparation for ART.
机译:最近的研究已经评估了使用磁性活性细胞分选(MACs)以减少凋亡精子并提高精子质量。 然而,尚未建立单独使用密度梯度离心(DGC)之前或之后使用MAC的效率。 本研究的目的是确定辅助再现技术(ART)中的MAC的最佳协议。 因此,我们比较了单独的DGC获得的精子质量(DGC),DGC,后跟MAC(DGC-MAC),MAC随后是DGC(MACS-DGC),以及单独的MAC(MACS),并发现组合方法(MACS- 与单个方案相比,DGC和DGC-MAC)导致与碎片DNA的较少精子的检索。 然而,MACS-DGC协议导致具有比DGC-MAC协议的渐进运动和正常形态更高的精子百分比。 这些研究结果表明,使用MACS-DGC的潜在临床价值,以提高艺术精炼制剂中的精子质量。

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