Optimized protocols of meiotic arrest maintenance improved in vitro maturation of ovine oocytes

Nan He1, Yong-Qi Wang1, Lin Jiang1

  • 1College of Animal Science and Technology, Shandong Agricultural University, Tai'an City 271018, P. R. China.

Abstract

Insights

Optimizing meiotic arrest maintenance (MAM) in ovine oocytes using a combination of roscovitine, db-cAMP, and U0126 significantly improved developmental potential. Antioxidants are crucial for extended MAM protocols in sheep oocytes.

Area of Science:

  • Reproductive Biology
  • Developmental Biology
  • Oocyte Maturation

Background:

  • In vitro-matured (IVM) oocytes have lower developmental potential (DP) than in vivo-matured oocytes due to premature meiosis resumption.
  • Meiotic arrest maintenance (MAM) during IVM enhances oocyte DP, but studies in ovine oocytes are limited.

Purpose of the Study:

  • To optimize MAM protocols for improving ovine oocyte maturation and developmental potential.
  • Investigate the role of signaling pathways and oxidative stress in ovine oocyte meiotic arrest.

Main Methods:

  • Ovine oocytes were cultured with MAM for 24 hours.
  • Assessed MAM efficiency and oocyte DP using combinations of roscovitine (RSC), db-cAMP, and U0126 at reduced concentrations.
  • Evaluated the impact of antioxidant supplementation during MAM.

Main Results:

  • Combined application of RSC, db-cAMP, and U0126 at 12.5 μM, 1000 μM, and 10 μM respectively, achieved high MAM efficiency.
  • An 18-hour MAM period resulted in significantly higher oocyte DP compared to controls.
  • Antioxidant addition during MAM enhanced oocyte DP, mitigating oxidative stress.

Conclusions:

  • A combination of RSC, db-cAMP, and U0126 at reduced concentrations effectively improves ovine oocyte DP.
  • Ovine oocyte meiotic arrest involves multiple signaling pathways, and extended MAM requires antioxidant support.
  • Findings are crucial for refining IVM protocols and understanding oocyte maturation mechanisms.