Yuhkoh Satouh, Emiko Suzuki, Keisuke Sasaki, Ken Sato
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引用次数: 0
摘要
染色体分离异常是卵母细胞质量下降的主要原因之一,主要表现在减数分裂 I 期间,即排卵前和排卵期间。然而,目前在不影响胚胎发育能力的前提下将 mRNA 导入早熟卵母细胞存在技术限制。在这项研究中,我们建立了一种低侵入性电穿孔(EP)方法,与传统的显微注射方法相比,它能以更简便的方式将 mRNA 导入小鼠排卵前的生殖泡(GV)卵母细胞。采用优化阻抗值的电穿孔法能将编码增强型绿色荧光蛋白(EGFP)的mRNA高效导入被积层细胞包围的GV卵母细胞中,其存活率高达95.0%。此外,将组蛋白 H2B-EGFP mRNA 导入 GV 卵母细胞后,大部分卵母细胞都被标记,而不影响囊胚的发育速度,这表明卵母细胞染色体动态可视化是可行的,使我们能够检测卵母细胞成熟过程中的染色体完整性和胚胎发育过程中的细胞数量。这种 EP 方法的建立为选择植入前胚胎提供了广泛的检测手段,并能对哺乳动物卵母细胞质量测定的重要因素进行调查。
Improved low-invasive mRNA electroporation method into immature mouse oocytes visualizes protein dynamics during development†.
One of the major causes of oocyte quality deterioration, chromosome segregation abnormalities manifest mainly during meiosis I, which occurs before and during ovulation. However, currently, there is a technical limitation in the introduction of mRNA into premature oocytes without impairing embryonic developmental ability. In this study, we established a low-invasive electroporation (EP) method to introduce mRNA into pre-ovulatory, germinal vesicle (GV) mouse oocytes in an easier manner than the traditional microinjection method. The EP method with an optimized impedance value resulted in the efficient introduction of mRNAs encoding enhanced green fluorescent protein (EGFP) into the GV oocytes surrounded by cumulus cells at a survival rate of 95.0%. Furthermore, the introduction of histone H2B-EGFP mRNA into the GV oocytes labeled most of the oocytes without affecting the blastocyst development rate, indicating the feasibility of the visualization of oocyte chromosomal dynamics that enable us to assay chromosomal integrity in oocyte maturation and cell count in embryonic development. The establishment of this EP method offers extensive assays to select pre-implantation embryos and enables the surveying of essential factors for mammalian oocyte quality determination.