Abstract

Background and Aim:Oocyte in vitro maturation (IVM) is an appealing approach for several assisted reproductive technologies and dissecting oocyte maturation. Nonetheless, IVM leads to lower developmental competence and usually relies on undefined, serum-containing media. Therefore, biochemical profiling aimed to explore fluctuations in IVM media content during the acquisition of oocyte developmental competence.Materials and Methods:Bovine cumulus-oocyte complexes (COCs) underwent IVM in TCM199 medium with Earle’s salts, supplemented with 2.0 mM L-glutamine, 10% fetal bovine serum, antibiotics, and 0.05 IU/mL porcine follicle-stimulating hormone (FSH+) or vehicle control (CTL) medium for 22 h.Results:FSH withdrawal (CTL) diminished several processes associated with the acquisition of oocyte developmental competence, such as reduced cumulus cell expansion, diminished estradiol synthesis (FSH+: 116.0±0.0 pg/mL vs. CTL: 97.6±18.0 pg/mL), and lower oocyte nuclear maturation rate (FSH+: 96.47% vs. CTL: 88.76%). Fresh media formulations (i.e., TCM199 with FSH or vehicle) were indistinguishable under biochemical profiling threshold conditions. Biochemical profiling showed similar total protein and lipid concentrations between groups. Further, total sugar concentrations diminished from fresh media to their post-IVM counterparts, albeit in an FSH-independent manner. Glycogen concentrations remained unaltered after IVM within CTL media, albeit were substantially lower after IVM under FSH+ conditions.Conclusion:FSH mediates the consumption of serum-derived glycogen by bovine COCs during IVM and implies that serum-free media should contain increased glucose concentrations to facilitate the acquisition of oocyte developmental competence.

Highlights

  • Oocytes must undergo nuclear and cytoplasm changes during the acquisition of developmental competence, which is the potential to sustain early embryogenesis compatible with full-term development

  • follicle-stimulating hormone (FSH) withdrawal (CTL) diminished several processes associated with the acquisition of oocyte developmental competence, such as reduced cumulus cell expansion, diminished estradiol synthesis (FSH+: 116.0±0.0 pg/mL vs. CTL: 97.6±18.0 pg/mL), and lower oocyte nuclear maturation rate (FSH+: 96.47% vs. CTL: 88.76%)

  • Glycogen concentrations remained unaltered after in vitro maturation (IVM) within CTL media, albeit were substantially lower after IVM under FSH+ conditions

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Summary

Introduction

Oocytes must undergo nuclear and cytoplasm changes during the acquisition of developmental competence, which is the potential to sustain early embryogenesis compatible with full-term development. Cytoplasmic changes during the acquisition of developmental competence include protein synthesis [5], protein post-translational modifications [2,3,4], reorganization of cellular organelles [6], and activation of Ca2+-release mechanisms [7]. Biochemical profiling aimed to explore fluctuations in IVM media content during the acquisition of oocyte developmental competence

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