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March 14, 2026Nature Communications0 citationsOpen Access

ctDNA and tumor-based biomarkers of giredestrant response in acelERA breast cancer

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ACAnn CollierSHStephanie HilzACAlejandro Chibly

Key Points

  • The aim is to evaluate the response to giredestrant in breast cancer through ctDNA and tumor biomarker analysis.
  • Biomarker analysis of patients from the acelERA Breast Cancer trial
  • Assessment of ctDNA genomics and dynamics
  • Evaluation of ER activity in tumors
  • Comparison of responses based on prior CDK4/6 inhibitor exposure
  • Tumor ER activity correlates with giredestrant benefit in ESR1 -mutant tumors
  • High ctDNA burden and low ER activity predict rapid clinical progression
  • Early ctDNA clearance identifies responding patients

Abstract

Abstract Endocrine therapy (ET) resistance in estrogen receptor positive (ER+) advanced breast cancer is often linked to ESR1 mutations, yet responses to oral selective ER degraders vary within mutant subgroups. Through a biomarker analysis of acelERA Breast Cancer (NCT04576455), we show that tumor ER transcriptional activity as well as circulating tumor DNA (ctDNA) genomics and dynamics effectively stratify response to ET, including giredestrant. We find that following first-line therapy, the ctDNA genomic landscape is diverse and influenced by CDK4/6 inhibitor exposure. Despite this complexity, ER activity in ESR1 -mutant tumors remains comparable to early breast cancer but is reduced in most non-mutant cases. This maintained ER activity is associated with giredestrant benefit. Furthermore, early ctDNA clearance identifies responding patients, and the combination of low ER activity and high ctDNA burden predicts rapid clinical progression. These findings provide a framework for personalizing future breast cancer therapies by integrating liquid biopsies with tissue-based signatures.

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Cite This Study

Collier et al. (2026) studied this question.

synapsesocial.com/papers/69b4ad9a18185d8a39801254https://doi.org/10.1038/s41467-026-70335-0
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