Molecular Residual Disease in Breast Cancer: Detection and Therapeutic Interception

Arielle J Medford1, Beverly Moy1, Laura M Spring1

  • 1Massachusetts General Hospital Cancer Center, Harvard Medical School, Boston, Massachusetts.

Insights

Detecting molecular residual disease (MRD) through circulating tumor DNA (ctDNA) shows strong links to breast cancer recurrence. Ongoing trials are investigating if targeted therapies based on MRD detection can improve patient outcomes.

Area of Science:

  • Oncology
  • Molecular Diagnostics
  • Genomics

Background:

  • Breast cancer is a major cause of female cancer mortality, with metastatic recurrence a significant challenge post-treatment.
  • Current monitoring relies on symptomatic presentation or infrequent imaging, lacking sensitive early detection methods.
  • Circulating tumor DNA (ctDNA) offers a promising blood-based biomarker for detecting cancer recurrence.

Approach:

  • This review examines the scientific basis of various molecular residual disease (MRD) assays.
  • It summarizes the prognostic significance of MRD in early breast cancer.
  • It details ongoing clinical trials evaluating MRD-guided therapy escalation across breast cancer subtypes.

Key Points:

  • Molecular residual disease (MRD) detection via ctDNA assays signifies minimal cancer presence before clinical recurrence.
  • MRD detection is a strong predictor of future disease recurrence, often preceding clinical diagnosis by months.
  • The clinical utility of treatment escalation based on MRD detection is under active investigation.

Conclusions:

  • MRD detection via ctDNA assays represents a significant advancement in post-treatment monitoring for breast cancer.
  • Ongoing clinical trials are crucial for determining if MRD-guided therapeutic strategies improve survival and reduce recurrence.
  • Further research into MRD assays and targeted therapies holds potential for personalized breast cancer management.