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一种新型的低温瓶装置系统提供了一种无菌、无冷冻保护剂和无需离心的人类精子冷冻保存(封闭系统)。

A new cryotop vial device system provides an aseptic cryoprotectant-free and centrifuge-free cryopreservation of human spermatozoa (a closed system).

机构信息

Research and Clinical Center for Infertility, Yazd Reproductive Sciences Institute, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

Research and Clinical Center for Infertility, Yazd Reproductive Sciences Institute, Shahid Sadoughi University of Medical Sciences, Yazd, Iran; Andrology Research Center, Yazd Reproductive Sciences Institute, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

出版信息

Cryobiology. 2023 Jun;111:70-75. doi: 10.1016/j.cryobiol.2023.03.001. Epub 2023 Mar 2.

Abstract

Single sperm cryopreservation is a new method to preserve small numbers of spermatozoa in small droplets. So far, several devices have been introduced for this technique, but more studies are needed for its optimization. The aim of this study was optimizing the previous device for low number of spermatozoa and low volume semen, which led to design of Cryotop Vial device. Normal semen samples from 25 patients were prepared by swim-up method and divided into four groups: Fresh (F), Rapid freezing (R) and ultra-rapid freezing with Cryotop Device (CD) and Cryotop Vial Device (CVD). In R group, the diluted sperm suspension with sperm freezing medium was cooled in the vapor phase and then immersed in liquid nitrogen. Ultra rapid freezing was performed with sucrose in small volume using the Cryotop Device (CD) or Cryotop Vial Device (CVD). Sperm viability, motility, fine morphology, mitochondrial activity and DNA fragmentation were assessed in all samples. All sperm parameters decreased significantly in all the cryo groups compared to the fresh group. The comparison between the cryo groups showed that progressive motility (69.28 ± 6.82 vs. 55.68 ± 9.04, and 54.76 ± 5.34, p < 0.001) and viability (77.36 ± 5.48 vs.68.84 ± 8.51, p < 0.001, and 70.04 ± 7.44, P = 0.002) were significantly higher in the CVD compared to the CD and R groups respectively. DNA fragmentation was also significantly lower in both ultra-rapid freezing groups (CD and CVD) compared to the R group. Fine morphology and mitochondrial activity were not different between the cryo groups. The CVD as a cryoprotectant and centrifuge-free technique preserved sperm motility, viability and DNA integrity after cryopreservation better than other groups.

摘要

单精子冷冻保存是一种将少量精子保存在小液滴中的新方法。到目前为止,已经有几种设备被引入用于这项技术,但还需要更多的研究来优化它。本研究的目的是优化以前用于精子数量少和精液量低的设备,这导致了 Cryotop Vial 设备的设计。将 25 名患者的正常精液样本通过游泳法制备,并分为四组:新鲜组(F)、快速冷冻组(R)和使用 Cryotop 设备(CD)和 Cryotop Vial 设备(CVD)的超快速冷冻组。在 R 组中,将稀释的精子悬液与精子冷冻液在气相中冷却,然后浸入液氮中。使用 Cryotop 设备(CD)或 Cryotop Vial 设备(CVD),在小体积中使用蔗糖进行超快速冷冻。所有样本均评估精子活力、运动能力、精细形态、线粒体活性和 DNA 碎片化。与新鲜组相比,所有冷冻组的精子参数均显著下降。冷冻组之间的比较表明,前向运动精子(69.28±6.82 比 55.68±9.04 和 54.76±5.34,p<0.001)和活力(77.36±5.48 比 68.84±8.51,p<0.001,和 70.04±7.44,P=0.002)在 CVD 组中明显高于 CD 组和 R 组。与 R 组相比,两个超快速冷冻组(CD 和 CVD)的 DNA 碎片化也明显较低。精细形态和线粒体活性在冷冻组之间没有差异。与其他组相比,CVD 作为一种抗冷冻剂和无离心技术,在冷冻保存后更好地保存了精子的运动能力、活力和 DNA 完整性。

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