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Metabolomic profiles of bovine cumulus cells and cumulus-oocyte-complex-conditioned medium during maturation in vitro

机译:体外成熟过程中牛卵丘细胞和卵丘-卵母细胞复合条件培养基的代谢组学

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摘要

Cumulus cells are essential for nutrition of oocytes during maturation. In the absence of cumulus cells during maturation, oocyte developmental competence is severely compromised. In this study, we matured bovine cumulus-oocyte-complexes (COCs) for 8 h, the cumulus cells were removed and denuded oocytes were further matured for 15 h in either the medium conditioned by the initial 8 h culture, or in fresh unconditioned medium. Denuded oocytes that completed maturation in COC-conditioned medium demonstrated better developmental potential than denuded oocytes that completed maturation in standard maturation medium. An inventory was made of the metabolites secreted by COCs into the maturation medium during the first 8 h, from 8 to 23 h, and during an entire 23 h maturation protocol; the metabolomic changes in the cumulus cells during maturation were also investigated. In maturation medium, 173 biochemical components were detected compared to 369 different metabolites in cumulus cells. Significant changes in metabolomic components were evident in maturation medium and in cumulus cells during maturation, with most of the changes related to amino acid, carbohydrate, and lipid metabolism. The importance of two detected biochemicals, creatine and carnitine, for oocyte maturation was further investigated. The presence of carnitine, but not creatine during oocyte in vitro maturation improved the developmental competence of denuded oocytes.
机译:卵丘细胞对于成熟期间卵母细胞的营养至关重要。在成熟过程中不存在卵丘细胞的情况下,卵母细胞的发育能力受到严重损害。在这项研究中,我们将牛卵-卵母细胞复合体(COCs)成熟了8 h,在最初的8 h培养条件下的培养液中或新鲜的无条件培养液中,去除了卵丘细胞并进一步剥夺了裸露的卵母细胞15 h。 。在COC条件培养基中完成成熟的裸露卵母细胞比在标准成熟培养基中完成成熟的裸露卵母细胞显示出更好的发展潜力。记录了在最初的8小时,从8小时到23小时以及整个23小时的成熟过程中,COC分泌到成熟培养基中的代谢物;还研究了成熟过程中卵丘细胞的代谢组学变化。在成熟培养基中,与卵丘细胞中的369种不同代谢产物相比,检测到173种生化成分。代谢组学成分的显着变化在成熟培养基中和在成熟过程中的卵丘细胞中均很明显,其中大部分变化与氨基酸,碳水化合物和脂质代谢有关。进一步研究了两种检测到的生物化学物质,肌酸和肉碱对于卵母细胞成熟的重要性。卵母细胞体外成熟过程中肉碱的存在而不是肌酸的存在改善了裸露卵母细胞的发育能力。

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