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Melatonin Improves In Vitro Development of Vitrified-Warmed Mouse Germinal Vesicle Oocytes Potentially via Modulation of Spindle Assembly Checkpoint-Related Genes

机译:褪黑素潜在地通过调节纺锤体装配检查点相关的基因改善玻璃化的小鼠生殖囊泡卵母细胞的体外发育。

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摘要

The present study aimed to investigate the effect of melatonin (MT) supplementation on in vitro maturation of vitrified mouse germinal vesicle (GV) oocytes. The fresh oocytes were randomly divided into three groups: untreated (control), or vitrified by open-pulled straw method without (vitrification group) or with MT supplementation (vitrification + MT group). After warming, oocytes were cultured in vitro, then the reactive oxygen species (ROS) and glutathione (GSH) levels, mitochondrial membrane potential, ATP levels, spindle morphology, mRNA expression of spindle assembly checkpoint (SAC)-related genes (Mps1, BubR1, Mad1, Mad2), and their subsequent developmental potential in vitro were evaluated. The results showed that vitrification/warming procedures significantly decreased the percentage of GV oocytes developed to metaphase II (MII) stage, the mitochondrial membrane potential, ATP content, and GSH levels, remarkably increased the ROS levels, and significantly impaired the spindle morphology. The expressions of SAC-related genes were also altered in vitrified oocytes. However, when 10−7 mol/L MT was administered during the whole length of the experiment, the percentage of GV oocytes matured to MII stage was significantly increased, and the other indicators were also significantly improved and almost recovered to the normal levels relative to the control. Thus, we speculate that MT might regulate the mitochondrial membrane potential, ATP content, ROS, GSH, and expression of SAC-related genes, potentially increasing the in vitro maturation of vitrified-warmed mouse GV oocytes.
机译:本研究旨在研究褪黑激素(MT)对玻璃化小鼠生发囊泡(GV)卵母细胞体外成熟的影响。将新鲜的卵母细胞随机分为三组:未处理(对照组),或通过不使用(玻璃化组)或添加MT(玻璃化+ MT组)的开孔秸秆方法进行玻璃化。升温后,在体外培养卵母细胞,然后研究活性氧(ROS)和谷胱甘肽(GSH)水平,线粒体膜电位,ATP水平,纺锤形,纺锤体装配检查点(SAC)相关基因的mRNA表达(Mps1,BubR1 ,Mad1,Mad2)及其随后的体外发育潜力进行了评估。结果表明,玻璃化/加热程序显着降低了发展到中期II(MII)阶段的GV卵母细胞的百分比,线粒体膜电位,ATP含量和GSH水平,显着增加了ROS水平,并显着损害了纺锤体形态。在玻璃化卵母细胞中,SAC相关基因的表达也发生了变化。然而,在整个实验过程中施用10 −7 mol / L MT时,成熟至MII期的GV卵母细胞百分比显着增加,其他指标也显着改善,几乎恢复到相对于对照的正常水平。因此,我们推测MT可能调节线粒体膜电位,ATP含量,ROS,GSH和SAC相关基因的表达,从而可能增加玻璃化加温的小鼠GV卵母细胞的体外成熟度。

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