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Molecular Factors Predicting Ovarian Chemotoxicity in Fertile Women: A Systematic Review
Diego Raimondo1, Antonio Raffone2,3, Daniele Neola4
1Division of Gynecology and Human Reproduction Physiopathology, IRCCS Azienda Ospedaliero-Universitaria di Bologna, 40138 Bologna, Italy.
Abstract:
Background: Recent advances in cancer diagnosis and treatment have significantly improved survival rates among women of reproductive age facing cancer. However, the potential iatrogenic loss of fertility caused by chemotherapeutic agents underscores the need to understand and predict chemotherapy-induced ovarian damage. This study addresses this gap by systematically reviewing the literature to investigate genetic markers associated with chemotherapy-induced ovarian failure (CIOF). Objective: The primary objective is to identify genetic markers linked to CIOF, contributing to a comprehensive understanding of the factors influencing fertility preservation in female cancer survivors. Methods: A systematic review was conducted using PubMed, EMBASE, Web of Science, Scopus, and OVID electronic databases from inception through December 2023. Studies were included if they featured genomic assessments of genes or polymorphisms related to CIOF in women with histologically confirmed tumors. Exclusion criteria comprised in vitro and animal studies, reviews, and pilot studies. The resulting four human-based studies were scrutinized for insights into genetic influences on CIOF. Results: Of the 5179 articles initially identified, four studies met the inclusion criteria, focusing on alkylating agents, particularly cyclophosphamide, and anthracyclines. Su et al. explored CYP3A41B variants, revealing modified associations with CIOF based on age. Charo et al. investigated GSTA1 and CYP2C19 polymorphisms, emphasizing the need to consider age and tamoxifen therapy in assessing associations. Oktay et al. delved into the impact of BRCA mutations on anti-Müllerian hormone (AMH) levels post-chemotherapy, supported by in vitro assays. Van der Perk et al. focused on childhood cancer survivors and revealed significant associations of CYP3A43 and CYP2B6*2 SNPs with AMH levels. Conclusions: This systematic review analyzes evidence regarding genetic markers influencing CIOF, emphasizing the complex interplay of age, specific genetic variants, and chemotherapy regimens. The findings underscore the need for a personalized approach in assessing CIOF risk, integrating genetic markers with traditional ovarian reserve testing. The implications of this study extend to potential advancements in fertility preservation strategies, offering clinicians a comprehensive baseline assessment for tailored interventions based on each patient's unique genetic profile. Further research is essential to validate these findings and establish a robust framework for integrating genetic markers into clinical practice.
Insights
Identifying genetic markers for chemotherapy-induced ovarian failure (CIOF) is crucial for preserving fertility in cancer survivors. This review highlights key genetic variants and their interplay with age and treatment, paving the way for personalized risk assessment.
Area of Science:
- Oncology
- Genetics
- Reproductive Medicine
Background:
- Cancer treatments, particularly chemotherapy, can cause iatrogenic infertility in women of reproductive age.
- Chemotherapy-induced ovarian failure (CIOF) necessitates understanding predictive markers for fertility preservation.
- This study systematically reviews genetic factors influencing ovarian damage from chemotherapy.
Purpose of the Study:
- To identify genetic markers associated with chemotherapy-induced ovarian failure (CIOF).
- To enhance understanding of factors influencing fertility preservation in female cancer survivors.
- To provide a foundation for personalized risk assessment and fertility preservation strategies.
Main Methods:
- Systematic literature review of PubMed, EMBASE, Web of Science, Scopus, and OVID (inception–December 2023).
- Inclusion of human genomic studies on genes/polymorphisms related to CIOF in women with confirmed tumors.
- Exclusion of in vitro, animal, review, and pilot studies, resulting in four relevant human studies.
Main Results:
- Four studies identified genetic markers (e.g., CYP3A41B, GSTA1, CYP2C19, BRCA, CYP3A43, CYP2B6*2) associated with CIOF.
- Associations were influenced by factors such as age, specific chemotherapy agents (cyclophosphamide, anthracyclines), and tamoxifen therapy.
- BRCA mutations and specific single nucleotide polymorphisms (SNPs) impacted anti-Müllerian hormone (AMH) levels post-chemotherapy.
Conclusions:
- Genetic markers play a complex role in chemotherapy-induced ovarian failure, interacting with age and treatment regimens.
- Personalized risk assessment for CIOF should integrate genetic markers with traditional ovarian reserve testing.
- Further research is needed to validate findings and establish a framework for clinical integration of genetic markers in fertility preservation.
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