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利用偏光场显微镜和免疫细胞化学技术监测卵母细胞减数分裂期纺锤体解聚对温度变化的反应中的特异性差异。

Oocyte meiotic-stage-specific differences in spindle depolymerization in response to temperature changes monitored with polarized field microscopy and immunocytochemistry.

机构信息

Department of Gynecology, Medical School, University of São Paulo, São Paulo, Brazil.

出版信息

Fertil Steril. 2012 Mar;97(3):714-9. doi: 10.1016/j.fertnstert.2011.12.018. Epub 2012 Jan 11.

Abstract

OBJECTIVE

To compare the polymerization status of mouse oocyte spindles exposed to various temperatures at various stages of meiosis.

DESIGN

Experimental animal study.

SETTING

University animal laboratory.

ANIMAL(S): CF1 mice.

INTERVENTION(S): Immature oocytes matured to metaphase I (MI), telophase I (TI), and metaphase II (MII) were incubated at 37 °C (control), room temperature (RT), or 4 °C for 0, 10, 30, and 60 minutes. Spindle analysis subsequently was performed using polarized field microscopy and immunocytochemistry. Spindles of TI and MII oocytes that underwent vitrification and warming were analyzed also by immunocytochemistry.

MAIN OUTCOME MEASURE(S): Detection of polymerized meiotic spindles.

RESULT(S): At RT, and after 60 minutes at 4 °C, a significant time-dependent decrease in the percentage of polymerized meiotic spindles was observed in MI and MII oocytes, but not in TI oocytes. The polymerization of TI spindles at 4 °C was similar to that of TI spindles at 4 °C that underwent vitrification and warming.

CONCLUSION(S): Significant differences in the microtubule dynamics of MI, TI, and MII oocytes incubated at different temperatures were observed. In particular, meiotic spindles in TI oocytes exhibited less depolymerization than did metaphase spindles.

摘要

目的

比较减数分裂各期处于不同温度下的小鼠卵母细胞纺锤体的聚合状态。

设计

实验动物研究。

单位

大学动物实验室。

动物

CF1 小鼠。

干预

将处于中期 I(MI)、末期 I(TI)和中期 II(MII)的未成熟卵母细胞分别在 37°C(对照)、室温(RT)或 4°C 下孵育 0、10、30 和 60 分钟。随后使用偏光场显微镜和免疫细胞化学法进行纺锤体分析。还通过免疫细胞化学法分析了经历玻璃化和复温的 TI 和 MII 卵母细胞的纺锤体。

主要观察指标

聚合减数分裂纺锤体的检测。

结果

在 RT 下,以及在 4°C 孵育 60 分钟后,在 MI 和 MII 卵母细胞中,聚合的减数分裂纺锤体的百分比明显随时间下降,但 TI 卵母细胞中没有这种情况。4°C 下 TI 纺锤体的聚合与经历玻璃化和复温的 TI 纺锤体的聚合相似。

结论

在不同温度下孵育的 MI、TI 和 MII 卵母细胞的微管动力学存在显著差异。特别是,TI 卵母细胞中的减数分裂纺锤体比中期纺锤体更不易解聚。

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