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Updated: Nov 21, 2025

Fertility Preservation in Patients with Severe Ovarian Dysfunction
Published on: March 25, 2021
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.
Background:
Preventing premature ovarian failure (POF) is a major challenge in oncology. With conventional regimens, cytotoxicity-associated POF involves primordial follicles (PF) pool depletion by apoptosis or overactivation mechanisms, notably mediated by the ABL/TAp63 and PI3K/Akt/mTOR pathways. New anticancer treatments have been designed to target pathways implicated in tumor growth. Although concerns regarding fertility arise with these targeted therapies, we hypothesized that targeted therapies may exert off-tumor effects on PF that might delay POF. We provide an overview of evidence concerning these off-tumor effects on PF. Limitations and future potential implications of these findings are discussed.
Design:
PubMed was searched by combining Boolean operators with the following keywords: fertility, ovarian, follicle, anti-tumoral, cancer, targeted, cytotoxic, and chemotherapy.
Results:
Cisplatin-related PF apoptosis via the ABL/TAp63 pathway was targeted with a tyrosine kinase inhibitor, imatinib, in mice, but effects were recently challenged by findings on human ovarian xenografts in mice. In cyclophosphamide-treated mice, PI3K/Akt/mTOR pathway inhibition with mTOR inhibitors and AS101 preserved the PF pool. Proteasome and GSK3 inhibitors were evaluated for direct and indirect follicle DNA damage prevention. Surprisingly, evidence for cytotoxic drug association with PF pool preservation was found. We also describe selected non-anticancer molecules that may minimize gonadotoxicity.
Conclusion:
Not all anticancer treatments are associated with POF, particularly since the advent of targeted therapies. The feasibility of associating a protective drug targeting PF exhaustion mechanisms with cytotoxic treatments should be evaluated, as a way of decreasing the need for conventional fertility preservation techniques. Further evaluations are required for transfer into clinical practice.
Implications For Practice:
Anticancer therapies are associated with infertility in 10%-70% of patients, which is the result of primordial follicles pool depletion. Alone or associated with gonadotoxic treatments, some targeted therapies may exert favorable off-targets effects on the primordial follicle pool by slowing down their exhaustion. Current evidence of these effects relies on murine models or human in vitro models. Evaluation of these protective strategies in humans is challenging; however, if these results are confirmed with clinical and biological data, it not only could be a new approach to female fertility preservation but also would change standard fertility strategies.
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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