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A Role of Lipid Metabolism During Cumulus-oocyte Complex Maturation: Impact of Lipid Modulators to Improve Embryo Production

Overview
Publisher Wiley
Specialties Biochemistry
Pathology
Date 2014 Apr 16
PMID 24733963
Citations 42
Authors
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Abstract

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.

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References
1.
van den Hurk R, Zhao J . Formation of mammalian oocytes and their growth, differentiation and maturation within ovarian follicles. Theriogenology. 2005; 63(6):1717-51. DOI: 10.1016/j.theriogenology.2004.08.005. View

2.
Downs S, Hudson E, Grahame Hardie D . A potential role for AMP-activated protein kinase in meiotic induction in mouse oocytes. Dev Biol. 2002; 245(1):200-12. DOI: 10.1006/dbio.2002.0613. View

3.
Xia G, Kikuchi K, Noguchi J, Izaike Y . Short time priming of pig cumulus-oocyte complexes with FSH and forskolin in the presence of hypoxanthine stimulates cumulus cells to secrete a meiosis-activating substance. Theriogenology. 2000; 53(9):1807-15. DOI: 10.1016/s0093-691x(00)00316-2. View

4.
Gajda B . Factors and methods of pig oocyte and embryo quality improvement and their application in reproductive biotechnology. Reprod Biol. 2009; 9(2):97-112. View

5.
Romek M, Gajda B, Krzysztofowicz E, Smorag Z . Lipid content of non-cultured and cultured pig embryo. Reprod Domest Anim. 2008; 44(1):24-32. DOI: 10.1111/j.1439-0531.2007.00984.x. View