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Efficient vitrification of mouse embryos using the Kitasato Vitrification System as a novel vitrification device

机译:使用Kitasato玻璃化系统作为新型玻璃化设备,对小鼠胚胎进行有效的玻璃化

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Background Currently, the cryopreservation of embryos and oocytes is essential for assisted reproductive technology (ART) laboratories worldwide. This study aimed to evaluate the efficacy of the Kitasato Vitrification System (KVS) as a vitrification device for the cryopreservation of mouse embryos to determine whether this novel device can be adapted to the field of ART. Methods In Experiment 1, blastocysts were vitrified using the KVS. Vitrified blastocysts were warmed and subsequently cultured for 72?h. In Experiment 2, 2-cell-stage embryos were vitrified using the KVS, and vitrified embryos were warmed and subsequently cultured for 96?h. In Experiment 3, we evaluated the in vivo developmental potential of vitrified 2-cell-stage embryos using the KVS, and in Experiment 4, we evaluated the cooling and warming rates for these devices using a numerical simulation. Results In Experiment 1, there were no significant differences between the survival rates of the KVS and a control device. However, re-expanded (100%) and hatching (91.8%) rates were significantly higher for blastocysts vitrified using the KVS. In Experiment 2, there were no significant differences between the survival rates, or rates of development to the blastocyst stage, of vitrified and fresh embryos. In Experiment 3, after embryo transfer, 41% of the embryos developed into live offspring. In Experiment 4, the cooling and warming rates of the KVS were 683,000 and 612,000?°C/min, respectively, exceeding those of the control device. Conclusions Our study clearly demonstrates that the KVS is a novel vitrification device for the cryopreservation of mouse embryos at the blastocyst and 2-cell stage.
机译:背景技术目前,胚胎和卵母细胞的冷冻保存对于全球辅助生殖技术(ART)实验室至关重要。这项研究旨在评估Kitasato玻璃化系统(KVS)作为用于小鼠胚胎冷冻保存的玻璃化装置的功效,以确定这种新型装置是否可以适应ART领域。方法在实验1中,使用KVS将胚泡玻璃化。将玻璃化的胚泡温热,然后培养72?h。在实验2中,使用KVS对2细胞阶段的胚胎进行玻璃化,然后将玻璃化的胚胎加热,然后培养96?h。在实验3中,我们使用KVS评估了玻璃化2细胞阶段胚胎的体内发育潜力,在实验4中,我们使用数值模拟评估了这些设备的冷却和升温速率。结果在实验1中,KVS和控制装置的存活率之间没有显着差异。但是,使用KVS玻璃化的胚泡的再膨胀率(100%)和孵化率(91.8%)明显更高。在实验2中,玻璃化和新鲜胚胎的存活率或发育到胚泡期的速率之间没有显着差异。在实验3中,胚胎移植后,有41%的胚胎发育成活的后代。在实验4中,KVS的冷却和加热速率分别为683,000和612,000?C / min,超过了控制装置。结论我们的研究清楚地表明,KVS是一种新型玻璃化装置,用于在胚泡期和2细胞期冷冻保存小鼠胚胎。

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