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Use of polarized light microscopy in porcine reproductive technologies

机译:偏振光显微镜在猪繁殖技术中的应用

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The meiotic spindle in the oocyte is composed of microtubules and plays an important role during chromosome alignment and separation at meiosis. Polarized light microscopy (PLM) could be useful for a non-invasive evaluation of the meiotic spindle and may allow removal of nuclear structures without fluorochrome staining and ultraviolet exposure. In this study, PLM was used to assess its potential application in porcine reproductive technologies. The objectives of the present study were to assess the efficiency of PLM to detect microtubule-polymerized protein in in vitro-matured porcine oocytes; to examine its effects on the oocyte developmental competence; to select oocytes based on the presence of the meiotic spindle detected by PLM; and to assess the efficiency oocyte enucleation assisted with PLM. In the first experiment, the presence of microtubule-polymerized protein was assessed and confirmed in oocytes (n = 117) by immunostaining and chromatin detection. In the second experiment, oocytes (n = 160) were exposed or not (controls) to PLM for 10 minutes, and then parthenogenetically activated and cultured in vitro. In the third experiment, development competence of oocytes with a positive or negative signal to PLM was analyzed after in vitro fertilization. Finally, oocytes (n = 54) were enucleated using PLM as a tool to remove the meiotic spindle. A positive PLM signal was detected in 98.2 % of the oocytes, which strongly correlated (r = 1; p < 0.0001) with the presence of microtubule-polymerized protein as confirmed by immunostaining. Oocytes exposed to PLM did not differ significantly from controls on cleavage, total blastocyst, expanded blastocyst rates and total cell numbers. The percentage of oocytes at the MII stage and blastocyst formation rate in the negative PLM group significantly differed from control and PLM positive groups. Overall efficiency of spindle removal using the PLM-Oosight system was 92.6%. These results suggest that polarized light microscopy is an efficient system to detect microtubule-polymerized protein in in vitro-matured porcine oocytes and does not exert detrimental effects on porcine oocyte developmental competence. Selecting oocytes by the presence of a PLM signal provides limited improvement on IVF results. Finally, PLM appears as an efficient method to enucleate porcine oocytes
机译:卵母细胞中的减数分裂纺锤体由微管组成,在减数分裂的染色体排列和分离过程中起着重要的作用。偏振光显微镜(PLM)可用于非侵入性评估减数分裂纺锤体,并可以去除核结构而无需荧光染料染色和紫外线照射。在这项研究中,PLM用于评估其在猪繁殖技术中的潜在应用。本研究的目的是评估PLM在体外成熟的猪卵母细胞中检测微管聚合蛋白的效率。检查其对卵母细胞发育能力的影响;根据PLM检测到的减数分裂纺锤体的存在来选择卵母细胞;并评估PLM辅助卵母细胞摘除的效率。在第一个实验中,通过免疫染色和染色质检测评估并证实了卵母细胞(n = 117)中微管聚合蛋白的存在。在第二个实验中,将卵母细胞(n = 160)暴露或不暴露(对照)于PLM中10分钟,然后进行孤雌性激活并体外培养。在第三个实验中,在体外受精后分析了具有阳性或阴性信号的卵母细胞对PLM的发育能力。最后,使用PLM作为去除减数分裂纺锤体的工具摘除卵母细胞(n = 54)。在98.2%的卵母细胞中检测到PLM阳性信号,这与免疫染色证实的微管聚合蛋白的存在密切相关(r = 1; p <0.0001)。暴露于PLM的卵母细胞在裂解,总胚泡,扩大的胚泡率和总细胞数方面与对照组无显着差异。阴性PLM组的MII期卵母细胞百分比和胚泡形成率与对照组和PLM阳性组明显不同。使用PLM-Oosight系统去除主轴的总效率为92.6%。这些结果表明,偏振光显微镜是检测体外成熟的猪卵母细胞中微管聚合蛋白的有效系统,并且对猪卵母细胞的发育能力没有不利影响。通过存在PLM信号选择卵母细胞对IVF结果的改善有限。最后,PLM似乎是去核猪卵母细胞的有效方法

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