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平衡期对快速冷冻后冻融小鼠桑椹胚活力的影响。

Effect of equilibration period on the viability of frozen-thawed mouse morulae after rapid freezing.

作者信息

Takahashi Y, Kanagawa H

机构信息

Department of Theriogenology, Faculty of Veterinary Medicine, Hokkaido University, Sapporo, Japan.

出版信息

Mol Reprod Dev. 1990 Jun;26(2):105-10. doi: 10.1002/mrd.1080260203.

Abstract

Mouse morulae were frozen with 1.5-4.0 M glycerol + 0.25 M lactose solution by direct plunging into liquid nitrogen vapor 0.5-30 min after equilibration at room temperature. After thawing, embryos were cultured in vitro, and the highest survival rates were obtained after exposure for 3 min at 3.0 and 4.0 M and for 5 min at 1.5 and 2.0 M glycerol levels. Significant reductions in the survival rates (P less than 0.05) were observed when equilibration periods were extended for 3-5 min at 3.0 and 4.0 M and for 5-10 min at 1.5 and 2.0 M glycerol levels. These results clearly demonstrate that the equilibration time of embryos in glycerol-lactose mixture is one of the most important factors in the present rapid freezing conditions. To clarify the factors that lower embryo viability after prolonged equilibration, we performed further experiments on the effects of exposure to glycerol-lactose mixture on the developmental potential of embryos without freezing and on the volume changes of embryos during the exposure to glycerol solution with or without lactose. It was suggested that the detrimental effects of prolonged equilibration are due not only to the toxicity and osmotic injury of higher concentrations of cryoprotectant solution but also to the influx of water into embryonic cells caused by the hypotonic salt concentration of the extracellular (freezing) solution.

摘要

小鼠桑椹胚在室温平衡0.5 - 30分钟后,直接投入液氮蒸汽中,用1.5 - 4.0 M甘油 + 0.25 M乳糖溶液冷冻。解冻后,将胚胎进行体外培养,在3.0 M和4.0 M甘油浓度下暴露3分钟以及在1.5 M和2.0 M甘油浓度下暴露5分钟后获得最高存活率。当在3.0 M和4.0 M甘油浓度下平衡期延长3 - 5分钟以及在1.5 M和2.0 M甘油浓度下平衡期延长5 - 10分钟时,观察到存活率显著降低(P小于0.05)。这些结果清楚地表明,在当前快速冷冻条件下,胚胎在甘油 - 乳糖混合物中的平衡时间是最重要的因素之一。为了阐明长时间平衡后降低胚胎活力的因素,我们进一步进行了实验,研究暴露于甘油 - 乳糖混合物对未冷冻胚胎发育潜能的影响以及在有或无乳糖的甘油溶液暴露期间胚胎的体积变化。结果表明,长时间平衡的有害影响不仅归因于较高浓度冷冻保护剂溶液的毒性和渗透损伤,还归因于细胞外(冷冻)溶液的低渗盐浓度导致水流入胚胎细胞。

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