首页> 美国卫生研究院文献>The Journal of Reproduction and Development >Cryotolerance of porcine blastocysts is improved by treating in vitro matured oocytes with L-carnitine prior to fertilization
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Cryotolerance of porcine blastocysts is improved by treating in vitro matured oocytes with L-carnitine prior to fertilization

机译:通过在受精前用L-肉碱处理体外成熟的卵母细胞可以改善猪胚泡的低温耐受性

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摘要

Sufficient generation of adenosine triphosphate (ATP) by oocytes is critical for fertilization and embryo development. The objective of this study was to determine the effects of supplementing media with L-carnitine, a co-factor required for the metabolism of fatty acids, during the peri-fertilization period on embryo development and energy generation. Firstly, in vitro matured (IVM) porcine oocytes were co-incubated with sperm in IVF medium supplemented with 0‒24 mM L-carnitine. The blastocyst formation rate of the control group was greater than those of the L-carnitine groups (P < 0.05), except for the 3 mM L-carnitine group. Subsequently, oocytes and/or sperm were treated without or with 3 mM L-carnitine for either the 1 h pre-IVF oocyte incubation; the pre-IVF sperm preparation; the first 30 min of IVF; or the entire 5.5 h of IVF. Despite similar fertilization rates among the groups, the cleavage rate of the pre-IVF oocyte group was significantly greater than those of the other groups, except for the pre-IVF sperm group. Additionally, the oocyte ATP content and the cryotolerance of the resulting blastocysts were examined following the pre-IVF oocyte treatment. Oocyte ATP content was also similar among the groups (P > 0.05). Following vitrification, the post-warming survival rate of blastocysts derived from L-carnitine-treated oocytes was greater than that of blastocysts derived from untreated oocytes (42.4% vs. 24.9%; P < 0.05). In conclusion, a 1 h oocyte exposure to 3 mM L-carnitine immediately prior to insemination enhanced cleavage and improved the cryotolerance of resulting blastocysts. While the findings are suggestive of a lipolytic action, further studies are required to clarify the contributions of lipid metabolism and oxidative mechanisms to the observed effects of the L-carnitine treatment.
机译:卵母细胞充分产生三磷酸腺苷(ATP)对于受精和胚胎发育至关重要。这项研究的目的是确定在补充受精期补充培养基中添加左旋肉碱(脂肪酸代谢所需的辅助因子)对胚胎发育和能量产生的影响。首先,将体外成熟的(IVM)猪卵母细胞与精子在补充有0‒24 mM L-肉碱的IVF培养基中共同孵育。除3 mM L-肉碱组外,对照组的胚泡形成率高于L-肉碱组(P <0.05)。随后,将卵母细胞和/或精子在不进行或未进行3 mM L-肉碱的情况下进行IVF前卵母细胞孵育1小时。体外受精前的精子制备;试管婴儿的前30分钟;或整个5.5小时的试管婴儿。尽管各组之间的受精率相似,但IVF前卵母细胞组的卵裂率明显高于其他组。另外,在IVF前卵母细胞处理后,检查卵母细胞ATP含量和所得胚泡的低温耐受性。各组之间的卵母细胞ATP含量也相似(P> 0.05)。玻璃化后,经左旋肉碱处理的卵母细胞的胚泡的升温后存活率大于未经处理的卵母细胞的胚泡的升温后存活率(42.4%对24.9%; P <0.05)。总之,在授精前立即将卵母细胞暴露于3 mM L-肉碱可增强卵裂,并改善所产生的胚泡的低温耐受性。尽管这些发现暗示了脂解作用,但需要进一步的研究来阐明脂质代谢和氧化机制对左旋肉碱治疗效果的影响。

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