Fate of the first polar bodies in mouse oocytes

Yiliang Miao1, Suofeng Ma, Xinyong Liu

  • 1College of Animal Science and Veterinary Medicine, Shandong Agricultural University, Tai-an City, Shandong, P.R. China 271018.

Insights

The first polar body (FPB) position in oocytes shifts over time and with increasing perivitelline space (PVS), impacting its relationship with the MII spindle during maturation and aging.

Area of Science:

  • Reproductive Biology
  • Developmental Biology
  • Cell Biology

Background:

  • The spatial relationship between the MII spindle and the first polar body (FPB) is crucial for assisted reproductive technologies like nuclear transfer and intracytoplasmic sperm injection (ICSI).
  • Previous studies suggest FPB position is an unreliable indicator of meiotic spindle location in various species, yet factors influencing FPB deviation and degeneration remain underexplored.

Purpose of the Study:

  • To investigate the timing of first polar body (FPB) formation, degeneration, and deviation from the MII spindle.
  • To identify factors influencing FPB deviation and degeneration during in vivo and in vitro aging of mouse oocytes.
  • To assess the impact of perivitelline space (PVS) dynamics on FPB position.

Main Methods:

  • Oocytes from Kun-ming mice were matured in vivo and in vitro.
  • FPB integrity was assessed using microscopy, propidium iodide (PI) exclusion, and Hoechst staining for chromosomes.
  • FPB position relative to the MII spindle and PVS size were measured over time.

Main Results:

  • FPB extrusion began 8 hours post-maturation onset, with peak numbers occurring later in vitro (14 hr) than in vivo (10 hr).
  • Approximately 70% of FPBs degenerated within 6 hours post-maturation, with faster disappearance in vivo but similar degeneration tempo.
  • FPB deviation from the MII spindle increased with time, more slowly in vitro-matured oocytes, and was negatively correlated with PVS size.

Conclusions:

  • FPB displacement is a time- and PVS-dependent process, facilitated by increasing perivitelline space during oocyte aging.
  • FPB degeneration occurs rapidly post-maturation, with distinct temporal patterns in vivo versus in vitro.
  • Understanding FPB dynamics is essential for oocyte quality assessment and assisted reproduction techniques.

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