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On-Chip Cryopreservation: A Novel Method for Ultra-Rapid Cryoprotectant-Free Cryopreservation of Small Amounts of Human Spermatozoa

机译:片上冷冻保存:一种用于少量人精子的超快速无冷冻保护剂冷冻保存的新方法

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摘要

Cryopreservation of human spermatozoa free from cryoprotectant can avoid toxicity caused by highly concentrated cryoprotectant and a series of specific carriers have been previously explored, except for PDMS chip. Our study is aimed at exploring a novel device for ultra-rapid cryopreservation of small numbers of spermatozoa without cryoprotectant based on polydimethylsiloxane (PDMS) chips. Spermatozoa from 25 healthy men were involved in this study, comparing on-chip cryopreservation with different micro-channel height (group A: 10 µm height, group B: 50 µm height, group C: 100 µm height) and conventional freezing (group D) in liquid nitrogen for 72 h. The viability, motility, DNA integrity by comet assay and acrosome integrity by fluorescein isothiocyanate-conjugated peanut agglutinin (FITC-PNA) staining of frozen-thawed spermatozoa of each group were compared. The motility and viability of post-thawed spermatozoa was significantly decreased than that of pre-freezing spermatozoa. There was no difference of viability and motility of frozen-thawed spermatozoa between group A and D, while viability and motility of group B and C decreased compared to group A. Comet assay showed that no matter for group A or D, there was no difference of CR, TL, TD and OTM between pre-frozen and post-thawed spermatozoa. There was no difference of CR, TL, TD and OTM of post-thawed spermatozoa between group A and group D neither, while spermatozoa DNA damage was more serious in group B and group C with increasing height of micro-channel compared with group A. The proportion of intact acrosome of post-thawed spermatozoa in group A was the highest when compared with group B and group C, though similar to that of group D. In conclusion, PDMS chip with 10 µm height micro-channel is ideal for ultra-rapid cryopreservation of small quantity of spermatozoa without cryoprotectant.
机译:不含冷冻保护剂的人类精子的冷冻保存可以避免由高度浓缩的冷冻保护剂引起的毒性,除PDMS芯片外,以前已经探索了一系列特定的载体。我们的研究旨在探索一种基于聚二甲基硅氧烷(PDMS)芯片的无需冷冻保护剂的超快速冷冻冷冻少量精子的新型装置。来自25位健康男性的精子参与了这项研究,比较了不同微通道高度(A组:高度为10 µm,B组:高度为50 µm,C组:高度为100 µm)和常规冷冻(D组)的片上冷冻保存)在液氮中72小时。比较了每组冷冻解冻的精子的生存力,运动性,通过彗星分析的DNA完整性和通过异硫氰酸荧光素偶联的花生凝集素(FITC-PNA)染色的顶体完整性。解冻后的精子的活力和活力明显低于冷冻前的精子。 A,D组冻融精子的活力和运动性无差异,B,C组活力和运动性较A组下降。彗星试验表明,A,D组均无差异。冷冻前和解冻后的精子之间的CR,TL,TD和OTM的差异。 A组和D组之间解冻后的精子的CR,TL,TD和OTM均无差异,而B组和C组的精子DNA损伤则比A组更严重。与B组和C组相比,A组中融化后的精子完整顶体的比例最高,尽管与D组相似。总之,具有10 µm高度微通道的PDMS芯片是超薄精子的理想选择。无需冷冻保护剂即可快速冷冻少量精子。

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