Cryopreservation of in vitro matured oocytes is still considered as an experimental alternative to mature oocyte vitrification after ovarian stimulation. Here, we investigated whether rescue-IVM should be performed before or after vitrification. For this, 101 immature oocytes (germinal vesicle stage) from women undergoing ICSI were used. Oocytes were divided into three groups: freshly in vitro matured oocytes (IVM), freshly in vitro matured oocytes subsequently vitrified (IVMâ+âVIT) and vitrified/warmed GV oocytes then in vitro matured (VITâ+âIVM). Oocyte maturation rates and kinetics were assessed using time-lapse technology. Spindle dimensions and polarity, chromosome alignment and cytoplasmic F-actin filament length and density were determined using confocal microscopy and quantitative image analyses. No differences in IVM rates (fresh IVM: 63.16% and IVM post-VIT: 59.38%, pâ=â0.72) and timings (17.73 h in fresh IVM, 17.33 h in IVM post-VIT, pâ=â0.72) were observed whether IVM is performed freshly or after vitrification. Meiotic spindles were shorter in VITâ+âIVM (10.47 µm vs 11.23 µm in IVM and 11.40 µm in IVMâ+âVIT, pâ=â0.012 and pâ=â0.043) and wider in IVMâ+âVIT (9.37 µm vs 8.12 µm in IVM and 8.16 µm VITâ+âIVM, pâ=â0.027 and pâ=â0.026). The length-to-width ratio was lower in vitrified groups (IVMâ+âVIT: 1.19 and VITâ+âIVM: 1.26) compared to IVM (1.38), pâ=â0.013 and pâ=â0.014. No differences in multipolar spindle and chromosome misalignment occurrence and cytoplasmic F-actin filament length and density were observed between groups. Our results suggest vitrification before or after rescue-IVM does not seem to impair maturation rates and kinetics parameters but induces meiotic spindle alterations.
Vitrification of Human Oocytes Before or After Rescue-IVM Does not Impair Maturation Kinetics but Induces Meiotic Spindle Alterations.
在体外成熟修复之前或之后对人类卵母细胞进行玻璃化冷冻不会损害成熟动力学,但会诱发减数分裂纺锤体改变
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作者:Marteil Gaëlle, Metchat Aïcha, Dollet Sandra, Cugnot Camille, Chaput Laure, Pereira Bruno, Gremeau Anne Sophie, Brugnon Florence
| 期刊: | Reproductive Sciences | 影响因子: | 2.500 |
| 时间: | 2024 | 起止号: | 2024 Sep;31(9):2625-2636 |
| doi: | 10.1007/s43032-024-01596-7 | 种属: | Human |
| 研究方向: | 细胞生物学 | ||
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