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Importance of lipid metabolism on oocyte maturation and early embryo development: Can we apply what we know to buffalo?

机译:脂质代谢对卵母细胞成熟和早期胚胎发展的重要性:我们可以应用我们所知道的水牛吗?

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The knowledge about the biological events that regulate lipid metabolism in oocytes and embryos in buffalo is scarce. Lipogenesis, lipolysis, transport and oxidation of fatty acids (FAs) occur in gametes and embryonic cells of all mammalian species, as an intrinsic component of energy metabolism. In oocytes and cumulus cells, degradation of lipids is responsible for the production of ATP that is essential for the metabolic processes that lead to oocyte maturation in in vivo and in vitro culture conditions. Similarly, throughout embryo development, blastomeres have the capacity to use exogenous and/or endogenous lipid reserves to serve as an energy source necessary for early embryonic development. In addition, supplementation of culture media with L-carnitine to promote lipid metabolism during in vitro oocyte maturation and early embryonic development leads to an improved embryo quality. The limited scientific evidence available in buffalo indicates there is relatively greater oocyte lipid content as compared with many other species that undergoes a dynamic distribution during folliculogenesis and follicle maturation and that has a positive effect on oocyte maturation and embryo development when there is L-carnitine supplementation of the media. Advances in the understanding of the biological peculiarities of lipid metabolism, and the consequences of its alteration on the quality of buffalo gametes and embryos, therefore, are necessary to design specific culture media and laboratory procedures as a strategy to increase in vitro-derived embryo production rates.
机译:关于卵母细胞和水牛胚胎中调节脂质代谢的生物事件的知识是稀缺的。在所有哺乳动物物种的配子和胚胎细胞中发生脂肪酸,脂解,运输和氧化,作为能量代谢的内在成分。在卵母细胞和积云细胞中,脂质的降解负责ATP的产生对于导致体内和体外培养条件中导致卵母细胞成熟的代谢过程至关重要。类似地,在整个胚胎发育中,Blastomeres具有使用外源和/或内源性脂质储存的能力作为早期胚胎发育所需的能源。此外,在体外卵母细胞成熟和早期胚胎发育过程中补充培养培养基以促进脂质代谢导致改善的胚胎质量。水牛中可获得的有限的科学证据表明卵母细胞脂质含量相比,与许多经历卵泡发生期间的动态分布和卵泡成熟时的诸多物种相比,当存在L-肉碱补充时对卵母细胞成熟和胚胎发育具有积极影响媒体。理解脂质代谢的生物特性的理解进展,以及它改变对水牛配子和胚胎的质量的后果是设计特定的培养培养基和实验室程序作为一种增加体外胚胎生产的策略费率。

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