Time-lapse monitoring reveals that vitrification increases the frequency of contraction during the pre-hatching stage in mouse embryos

Yuki Shimoda, J. Kumagai, Mibuki Anzai, K. Kabashima, K. Togashi, Yasuko Miura, H. Shirasawa, W. Sato, Y. Kumazawa, Y. Terada
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引用次数: 9

Abstract

Contraction during the blastocyst stage is observed during embryonic development of various mammals, including humans, but the physiological role of this process is not well understood. Using time-lapse monitoring (TLM), we studied the influence of vitrification and contractions on embryonic development in mice. Mouse embryos were cultured at the 2-cell stage. At the 8-cell stage, embryos were randomly divided into a fresh group (FG) and vitrified group (VG) and observed for up to 144 h. Strong contractions (i.e., contractions causing a decrease in volume of more than 20% and expansion of the perivitelline space) occurred significantly more often in unhatched embryos than hatching embryos in both groups. Regarding hatching embryos, contractions in the pre-hatching stage were significantly more frequent in the VG than the FG. Furthermore, mRNA expression levels of genes related to contractions were determined at three time points, the 8-cell stage, early blastocyst stage, and 20 h after blastocoel formation, with quantitative reverse transcription-polymerase chain reaction. There was no significant difference in Hspa1a expression between the FG and VG, but Hspa1a overexpression was observed just after thawing and tended to decrease gradually thereafter in some blastocysts. Furthermore, in the VG, Atp1a1 tended to show higher expression in the strong contraction group than in the weak contraction group. Overall, vitrification is an excellent method for cryopreservation but could increase contractions in the pre-hatching stage and may increase energy demands of the embryo. Observation of contraction by TLM may improve the evaluation of embryo quality.
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延时监测显示,玻璃化增加了小鼠胚胎在孵化前阶段收缩的频率
在包括人类在内的各种哺乳动物的胚胎发育过程中,都观察到囊胚期的收缩,但这一过程的生理作用尚不清楚。采用延时监测(TLM)技术,研究了玻璃化和收缩对小鼠胚胎发育的影响。小鼠胚胎在2细胞期培养。在8细胞期,将胚胎随机分为新鲜组(FG)和玻璃化组(VG),观察长达144小时。两组未孵化胚胎的强烈收缩(即收缩导致体积减少20%以上,卵泡周围空间扩大)明显多于孵化胚胎。对于已孵化的胚胎,在孵化前阶段,VG的收缩明显多于FG。采用定量逆转录-聚合酶链反应测定8细胞期、囊胚早期和囊胚形成后20 h三个时间点收缩相关基因mRNA表达水平。Hspa1a的表达在FG和VG之间没有显著差异,但在解冻后的一些囊胚中,Hspa1a过表达,之后有逐渐降低的趋势。此外,在VG中,Atp1a1在强收缩组的表达高于弱收缩组。总的来说,玻璃化冷冻是一种极好的冷冻保存方法,但可能会增加胚胎在孵化前的收缩,并可能增加胚胎的能量需求。用TLM观察胚胎的收缩,可以提高胚胎质量的评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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