Molecular profiling of aromatase inhibitor sensitive and resistant ER+HER2- postmenopausal breast cancers

Eugene F Schuster1,2, Elena Lopez-Knowles3,4, Anastasia Alataki3,4

  • 1The Breast Cancer Now Toby Robins Research Centre at the Institute of Cancer Research, London, UK. gene.schuster@icr.ac.uk.

PubMed

Insights

Aromatase inhibitors help treat estrogen receptor-positive breast cancer, but resistance occurs. Molecular analysis revealed factors linked to poor response, including low ESR1 levels and high proliferation.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genomics

Background:

  • Aromatase inhibitors (AIs) are crucial for treating postmenopausal patients with estrogen receptor-positive (ER+) breast cancer (BC).
  • However, over 20% of patients experience disease relapse due to intrinsic resistance, necessitating a deeper understanding of resistance mechanisms.
  • Limited knowledge exists regarding the molecular features influencing intrinsic resistance to AIs in ER+ HER2- BC.

Purpose of the Study:

  • To conduct a large-scale molecular analysis comparing poorest responders (PRs) to good responders (GRs) of neoadjuvant AIs in ER+ HER2- BC.
  • To identify molecular features associated with intrinsic resistance and varying response to AIs.

Main Methods:

  • Comparison of 177 poorest responders (PRs) with 190 good responders (GRs) from the POETIC trial.
  • Selection of PRs from the lowest 15% of responders based on proportional Ki67 changes after 2 weeks of neoadjuvant AI.
  • GRs were selected from the top 50% of responders, matched for baseline Ki67 categories.

Main Results:

  • Low ESR1 levels were associated with poor response, high proliferation, activated growth factor pathways, and non-luminal subtypes.
  • PRs with high ESR1 expression showed similar luminal subtype proportions to GRs.
  • These high ESR1 PRs had lower plasma estradiol, reduced estrogen response gene expression, increased tumor-infiltrating lymphocytes and immune markers, and more TP53 mutations.

Conclusions:

  • Intrinsic resistance to AIs in ER+ HER2- BC is complex and multifactorial.
  • ESR1 expression levels, tumor microenvironment components (lymphocytes, immune markers), and TP53 mutation status are key factors influencing AI response.
  • These findings highlight potential therapeutic targets and biomarkers for overcoming AI resistance in breast cancer.