Can Some Anticancer Treatments Preserve the Ovarian Reserve?

Nicolas Vallet1, Nicolas Boissel2,3, Elisabeth Elefant4,5

  • 1Department of Hematology and Cellular Therapy, Tours University Hospital, Tours, France.

The Oncologist
|January 18, 2021
PubMed
Abstract

Insights

Targeted cancer therapies may protect ovarian follicles, potentially preserving fertility in patients undergoing treatment. Further research is needed to confirm these beneficial off-tumor effects for clinical fertility preservation strategies.

Area of Science:

  • Reproductive biology and oncology
  • Pharmacology of anticancer agents

Background:

  • Premature ovarian failure (POF) is a significant challenge in cancer treatment, often caused by the depletion of primordial follicles (PF).
  • Conventional chemotherapy can lead to POF through apoptosis or overactivation of PF, involving pathways like ABL/TAp63 and PI3K/Akt/mTOR.
  • Targeted therapies, while designed for cancer, may have unintended effects on PF, potentially delaying POF.

Purpose of the Study:

  • To review evidence on the off-tumor effects of targeted therapies on primordial follicles (PF).
  • To explore the potential of targeted therapies to mitigate chemotherapy-induced ovarian damage and preserve fertility.
  • To discuss limitations and future implications of these findings for fertility preservation in cancer patients.

Main Methods:

  • Literature search of PubMed using keywords related to fertility, ovarian follicles, and cancer therapies (targeted, cytotoxic, chemotherapy).
  • Review of studies investigating the effects of specific inhibitors (e.g., imatinib, mTOR inhibitors, proteasome inhibitors, GSK3 inhibitors) on PF.
  • Evaluation of evidence from murine models and human ovarian xenografts in mice.

Main Results:

  • Targeting cisplatin-induced PF apoptosis with imatinib showed mixed results in different models.
  • Inhibition of the PI3K/Akt/mTOR pathway with mTOR inhibitors and AS101 preserved PF in cyclophosphamide-treated mice.
  • Proteasome and GSK3 inhibitors were explored for preventing follicle DNA damage; surprisingly, some cytotoxic drugs showed PF pool preservation effects.
  • Selected non-anticancer molecules were identified for potential gonadotoxicity minimization.

Conclusions:

  • Not all anticancer treatments lead to POF, especially with the advent of targeted therapies.
  • Combining protective drugs targeting PF exhaustion with cytotoxic treatments warrants evaluation to reduce reliance on conventional fertility preservation.
  • Further clinical evaluation is necessary to translate these findings into practice.

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