Let-7a mimic transfection reduces chemotherapy-induced damage in a mouse ovarian transplantation model

Chrysanthi Alexandri1, Geraldine Van Den Steen2, Isabelle Demeestere2

  • 1Research Laboratory in Human Reproduction, Faculty of Medicine, Université Libre de Bruxelles (ULB), Brussels, Belgium. xrusanbio@hotmail.com.

Scientific Reports
|June 27, 2022
PubMed

Insights

let-7a microRNA replacement therapy shows promise for preserving fertility in young female cancer patients. This approach protects ovarian function against chemotherapy damage, improving oocyte quality and maturation.

Area of Science:

  • Reproductive biology
  • Oncology
  • Molecular biology

Background:

  • Fertility preservation is crucial for young female cancer patients facing gonadotoxic therapies.
  • Current pharmacological options like GnRH-agonists have limitations and controversial mechanisms.
  • MicroRNA (miRNA) replacement therapy is an emerging strategy for targeted fertility preservation.

Purpose of the Study:

  • To investigate the efficacy of let-7a miRNA replacement therapy in protecting ovarian function during chemotherapy.
  • To assess the impact of let-7a on follicular growth, survival, and oocyte maturation post-chemotherapy exposure.

Main Methods:

  • A mouse ovarian-kidney transplantation model was utilized.
  • Newborn mouse ovaries were exposed to chemotherapy (4-hydroperoxycyclophosphamide, 4-HC) with or without let-7a mimic transfection.
  • Follicular growth, DNA damage, apoptosis, and in vitro oocyte maturation were evaluated after transplantation.

Main Results:

  • let-7a replacement significantly increased the follicular pool compared to chemotherapy alone.
  • Co-treatment with let-7a reduced chemotherapy-induced DNA damage and apoptosis in ovarian tissues.
  • Oocyte in vitro maturation rates were higher in the let-7a treated group, indicating improved oocyte quality.

Conclusions:

  • let-7a miRNA replacement therapy demonstrates protective effects against chemotherapy-induced ovarian damage.
  • This miRNA-based strategy offers a promising new avenue for fertility preservation in cancer patients.
  • Further in vivo studies are warranted to explore clinical applications of let-7a for ovarian protection.