Possible modification of BRSK1 on the risk of alkylating chemotherapy-related reduced ovarian function

Anne-Lotte L F van der Kooi1,2, Marloes van Dijk3, Linda Broer4

  • 1Division of Reproductive Endocrinology and Infertility, Department of Obstetrics and Gynecology, Erasmus MC, University Medical Centre, Rotterdam, The Netherlands.

Abstract

Insights

Genetic variations in the BRSK1 gene increase the risk of reduced ovarian function in female childhood cancer survivors (CCS) treated with alkylating chemotherapy. This finding may help personalize fertility preservation counseling for young cancer patients.

Area of Science:

  • Oncology
  • Genetics
  • Reproductive Medicine

Background:

  • Childhood cancer survivors (CCS) exhibit significant variability in ovarian function following alkylating chemotherapy.
  • Genetic factors influencing DNA damage response may explain inter-individual differences in treatment outcomes.
  • Previous studies suggest a potential link between DNA repair genes and ovarian function in CCS.

Purpose of the Study:

  • To investigate whether genetic variations in DNA damage response pathways modify the adverse effects of alkylating agents on ovarian function in female CCS.
  • To identify specific gene variants associated with altered ovarian reserve and premature menopause in this population.

Main Methods:

  • A multi-center retrospective cohort study involving three independent cohorts (Dutch DCOG-LATER VEVO, PanCareLIFE, St. Jude Lifetime Cohort).
  • Assessment of anti-Müllerian hormone (AMH) levels to evaluate ovarian function.
  • Analysis of five genetic variants in DNA damage response genes using additive genetic models and meta-analysis in relation to chemotherapy dose (cyclophosphamide equivalent dose - CED).

Main Results:

  • A significant interaction effect was observed between the BRSK1 gene variant rs11668344 and high-dose alkylating agents (CED score ≥8000 mg/m2).
  • Female CCS carrying one G allele of BRSK1 rs11668344 had a 2.5-fold increased odds of reduced ovarian function (lowest AMH tertile) compared to those without the allele.
  • The finding was consistent across discovery and validation cohorts, with a meta-analysis P-value of 3.0 × 10-4.

Conclusions:

  • Genetic variations, specifically in the BRSK1 gene, play a role in determining ovarian function outcomes after alkylating chemotherapy in female childhood cancer survivors.
  • These findings underscore the potential for genetic profiling to predict treatment-related infertility risks.
  • Further research is warranted to validate these results and identify additional genetic markers for personalized risk assessment and fertility preservation counseling in young cancer patients.

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