Chamayou S, Romano S, Alecci C, Storaci G, Ragolia C, Palagiano A, Guglielmino A
Unità Di Medicina della Riproduzione - Istituto HERA, via Barriera del Bosco n. 51/53, 95030, Sant'Agata Li Battiati, Catania, Italy,
J Assist Reprod Genet. 2015 Apr;32(4):581-6. doi: 10.1007/s10815-015-0446-x. Epub 2015 Feb 21.
Oocyte vitrification does not affect embryo quality after oocyte warming, making this method effective in the preservation of female fertility. Morphokinetic parameters can be used to predict the competence of an embryo produced from fresh oocytes. Our aim was to study the effect of oocyte vitrification on zygote-embryo kinetics (pl).
The embryo-kinetics of fresh and sibling vitrified/warmed oocytes were compared to determine the consequences of oocyte preservation on the timing of embryo development. A 44-hours time-lapse analysis, from the time of ICSI (t0), of 179 fertilized fresh oocytes was compared to 168 fertilized sibling vitrified/warmed oocytes.
Oocyte vitrification accelerated pronuclear disappearance, one-cell stage timing and modified nucleoli activity by increasing their number and decreasing their diameter at the zygote stage. In contrast, embryo kinetics during cleavage were similar to those observed for fresh sibling oocytes based on the parameters examined in this study.
At the zygote stage, oocyte vitrification induces changes in pronuclei stability, probably due to pronuclei envelop instability as well as modifications in nucleoli functionality. Therefore, the predictive morphokinetic parameters on embryo competence found from fresh oocytes must be revised when applied on embryos from vitrified/warmed oocytes.
卵母细胞玻璃化冷冻在卵母细胞解冻后不影响胚胎质量,使该方法在女性生育力保存方面有效。形态动力学参数可用于预测由新鲜卵母细胞产生的胚胎的发育潜能。我们的目的是研究卵母细胞玻璃化冷冻对合子 - 胚胎动力学(pl)的影响。
比较新鲜和同胞玻璃化冷冻/解冻卵母细胞的胚胎动力学,以确定卵母细胞保存对胚胎发育时间的影响。对179个受精新鲜卵母细胞从卵胞浆内单精子注射(ICSI)时间(t0)开始进行44小时的延时分析,并与168个受精同胞玻璃化冷冻/解冻卵母细胞进行比较。
卵母细胞玻璃化冷冻加速了原核消失、单细胞阶段时间,并通过增加合子阶段核仁数量和减小其直径改变了核仁活性。相比之下,基于本研究中检查的参数,卵裂期胚胎动力学与新鲜同胞卵母细胞观察到的相似。
在合子阶段,卵母细胞玻璃化冷冻会引起原核稳定性的变化,这可能是由于原核包膜不稳定以及核仁功能改变所致。因此,当将从新鲜卵母细胞得出的预测胚胎发育潜能的形态动力学参数应用于玻璃化冷冻/解冻卵母细胞产生的胚胎时,必须进行修正。