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牛卵丘-卵母细胞复合体的代谢及其对后续发育能力的影响。

Metabolism of the bovine cumulus-oocyte complex and influence on subsequent developmental competence.

作者信息

Thompson J G, Lane M, Gilchrist R B

机构信息

Research Centre for Reproductive Health, School of Paediatrics and Reproductive Health, The University of Adelaide, Adelaide 5005.

出版信息

Soc Reprod Fertil Suppl. 2007;64:179-90. doi: 10.5661/rdr-vi-179.

Abstract

The two types of cells that make up the cumulus-oocyte complex (i.e. the oocyte and cumulus cells) have very different metabolic demands, with glucose occupying a central role in metabolic activity. Cumulus cells have a significant requirement for and utilise high levels of glucose, yet appear to have little need for oxidative metabolism. In contrast, oocytes have a requirement for oxidative metabolism, although limited glucose metabolism may also be an important aspect of meiotic and developmental competence. Nevertheless, because of the metabolic and communication link between the cumulus and the oocyte, glucose availability and metabolism within the cumulus can have a significant impact on oocyte meiotic and developmental competence. In particular, the role of the hexosamine biosynthesis pathway within cumulus cells appears critical for the supply of substrate from glucose for extracellular matrix production, yet if overstimulated can significantly decrease developmental competence of the oocyte. Current static systems for in vitro maturation are clearly incompatible with meeting substrate demands, especially glucose. In the future, in vitro maturation will include a more dynamic approach, which will adjust nutrient components to meet the changing functional requirements of cumulus-oocyte complexes during the final process of maturation.

摘要

构成卵丘-卵母细胞复合体的两种细胞(即卵母细胞和卵丘细胞)具有截然不同的代谢需求,葡萄糖在代谢活动中占据核心地位。卵丘细胞对葡萄糖有大量需求并利用高水平的葡萄糖,但似乎对氧化代谢需求不大。相比之下,卵母细胞需要氧化代谢,尽管有限的葡萄糖代谢可能也是减数分裂和发育能力的一个重要方面。然而,由于卵丘和卵母细胞之间的代谢和通讯联系,卵丘内葡萄糖的可用性和代谢会对卵母细胞的减数分裂和发育能力产生重大影响。特别是,卵丘细胞内己糖胺生物合成途径的作用对于从葡萄糖供应细胞外基质生产的底物似乎至关重要,但如果过度刺激会显著降低卵母细胞的发育能力。当前用于体外成熟的静态系统显然无法满足底物需求,尤其是葡萄糖。未来,体外成熟将采用更具动态性的方法,该方法将调整营养成分以满足卵丘-卵母细胞复合体在成熟最后过程中不断变化的功能需求。

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