Prates E G, Nunes J T, Pereira R M
INIAV Instituto Nacional de Investigação Agrária e Veterinária, Unidade de Biotecnologias e Recursos Genéticos-Santarém, Quinta da Fonte Boa, 2000-048 Vale de Santarém, Portugal ; Instituto de Ciências Agrárias e Ambientais Mediterrânicas (ICAAM), Universidade de Évora, Núcleo da Mitra, Ap. 94, 7002-554 Évora, Portugal.
Instituto de Ciências Agrárias e Ambientais Mediterrânicas (ICAAM), Universidade de Évora, Núcleo da Mitra, Ap. 94, 7002-554 Évora, Portugal.
Mediators Inflamm. 2014;2014:692067. doi: 10.1155/2014/692067. Epub 2014 Mar 6.
Oocyte intracellular lipids are mainly stored in lipid droplets (LD) providing energy for proper growth and development. Lipids are also important signalling molecules involved in the regulatory mechanisms of maturation and hence in oocyte competence acquisition. Recent studies show that LD are highly dynamic organelles. They change their shape, volume, and location within the ooplasm as well as their interaction with other organelles during the maturation process. The droplets high lipid content has been correlated with impaired oocyte developmental competence and low cryosurvival. Yet the underlying mechanisms are not fully understood. In particular, the lipid-rich pig oocyte might be an excellent model to understand the role of lipids and fatty acid metabolism during the mammalian oocyte maturation and their implications on subsequent monospermic fertilization and preimplantation embryo development. The possibility of using chemical molecules to modulate the lipid content of oocytes and embryos to improve cryopreservation as well as its biological effects during development is here described. Furthermore, these principles of lipid content modulation may be applied not only to germ cells and embryo cryopreservation in livestock production but also to biomedical fundamental research.
卵母细胞内的脂质主要储存在脂滴(LD)中,为正常生长和发育提供能量。脂质也是参与成熟调节机制以及卵母细胞能力获得的重要信号分子。最近的研究表明,脂滴是高度动态的细胞器。在成熟过程中,它们会改变其形状、体积、在卵质内的位置以及与其他细胞器的相互作用。脂滴的高脂质含量与受损的卵母细胞发育能力和低冷冻存活率相关。然而,其潜在机制尚未完全了解。特别是,富含脂质的猪卵母细胞可能是理解脂质和脂肪酸代谢在哺乳动物卵母细胞成熟过程中的作用及其对随后单精子受精和植入前胚胎发育的影响的极佳模型。本文描述了使用化学分子调节卵母细胞和胚胎脂质含量以改善冷冻保存及其在发育过程中的生物学效应的可能性。此外,这些脂质含量调节原则不仅可应用于畜牧生产中的生殖细胞和胚胎冷冻保存,也可应用于生物医学基础研究。