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慢速冷冻保存后人卵母细胞减数分裂纺锤体动力学

Meiotic spindle dynamics in human oocytes following slow-cooling cryopreservation.

作者信息

Bromfield J J, Coticchio G, Hutt K, Sciajno R, Borini A, Albertini D F

机构信息

Department of Molecular and Integrative Physiology, Centre for Reproductive Sciences, University of Kansas Medical Centre, Kansas City, KS, USA.

出版信息

Hum Reprod. 2009 Sep;24(9):2114-23. doi: 10.1093/humrep/dep182. Epub 2009 May 22.

Abstract

BACKGROUND

The demand for cryopreservation of human oocytes is increasing in assisted reproduction clinics and yet remains an experimental procedure. Surprisingly, little is known about the effects of cryopreservation on spindle-chromosome interactions and the recovery of meiotic spindle functionality. The goal of these studies was to evaluate the process of meiotic spindle reassembly and chromosome alignment in cryopreserved human metaphase II oocytes.

METHODS

Unfrozen control oocytes were compared with frozen oocytes fixed at 0, 1, 2 and 3 h after thawing. Oocytes were analysed by confocal microscopy and subjected to 3-dimensional image analysis to evaluate spindle integrity.

RESULTS

Freezing resulted in a loss of spindle bipolarity and chromosome alignment. One hour following thawing, most oocytes recovered spindle bipolarity and equatorial chromosomal alignment. However, between 2 and 3 h, a progressive loss of chromosome alignment was observed. Further analysis revealed a positive correlation between spindle length and number of displaced chromosomes following freezing. This time-dependent redistribution of chromosomes involved outward displacement from the equatorial plate and retention at the surface of the meiotic spindle.

CONCLUSIONS

Spindle disassembly incurred by cryopreservation is rapidly reversed and is coordinated with chromosome alignment within 1 h but is not sustained at later times.

摘要

背景

在辅助生殖诊所中,人类卵母细胞冷冻保存的需求不断增加,但它仍然是一种实验性操作。令人惊讶的是,关于冷冻保存对纺锤体 - 染色体相互作用以及减数分裂纺锤体功能恢复的影响,我们知之甚少。这些研究的目的是评估冷冻保存的人类中期 II 卵母细胞中减数分裂纺锤体重组和染色体排列的过程。

方法

将未冷冻的对照卵母细胞与解冻后 0、1、2 和 3 小时固定的冷冻卵母细胞进行比较。通过共聚焦显微镜分析卵母细胞,并进行三维图像分析以评估纺锤体完整性。

结果

冷冻导致纺锤体双极性和染色体排列丧失。解冻后 1 小时,大多数卵母细胞恢复了纺锤体双极性和赤道染色体排列。然而,在 2 至 3 小时之间,观察到染色体排列逐渐丧失。进一步分析显示,冷冻后纺锤体长度与移位染色体数量之间呈正相关。这种随时间变化的染色体重新分布涉及从赤道板向外移位并保留在减数分裂纺锤体表面。

结论

冷冻保存引起的纺锤体解聚在 1 小时内迅速逆转,并与染色体排列协调,但在随后的时间内无法持续。

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