Published May 31, 2024 | Version v1

New Approach to the Cryopreservation of GV Oocytes and Cumulus Cells through the Lens of Preserving the Intercellular Gap Junctions Based on the Bovine Model

  • 1. ROR icon InLife Institute of Animal Reproduction and Food Research, Polish Academy of Sciences
  • 2. ROR icon Institute for Problems of Cryobiology and Cryomedicine
  • 3. ROR icon Wrocław University of Environmental and Life Sciences
  • 4. Institute of Animal Reproduction and Food Research of Polish Academy of Sciences in Olsztyn

Description

Differences in structural and functional properties between oocytes and cumulus cells (CCs) may cause low vitrification efficiency for cumulus–oocyte complexes (COCs). We have suggested that the disconnection of CCs and oocytes in order to further cryopreservation in various ways will positively affect the viability after thawing, while further co-culture in vitro will contribute to the restoration of lost intercellular gap junctions. This study aimed to determine the optimal method of cryopreservation of the suspension of CCs to mature GV oocytes in vitro and to determine the level of mRNA expression of the genes (GJA1, GJA4; BCL2, BAX) and gene-specific epigenetic marks (DNMT3A) after cryopreservation and in vitro maturation (IVM) in various culture systems. We have shown that the slow freezing of CCs in microstraws preserved the largest number of viable cells with intact DNA compared with the methods of vitrification and slow freezing in microdroplets. Cryopreservation caused the upregulation of the genes Cx37 and Cx43 in the oocytes to restore gap junctions between cells. In conclusion, the presence of CCs in the co-culture system during IVM of oocytes played an important role in the regulation of the expression of the intercellular proteins Cx37 and Cx43, apoptotic changes, and oocyte methylation. Slow freezing in microstraws was considered to be an optimal method for cryopreservation of CCs.

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Funding

Institute of Animal Reproduction and Food Research
EGF, IGF-1 and cumulus cells co-culture system for in vitro maturation of mammalian oocytes as female fertility preservation strategy 2022/45/P/NZ3/03982