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Published on: November 29, 2018
Metastatic Breast Cancer With ESR1 Mutation: Clinical Management Considerations From the Molecular and Precision
Aditya Bardia1, John A Iafrate2, Tilak Sundaresan2
1Massachusetts General Hospital Cancer Center, Harvard Medical School, Boston, Massachusetts, USA bardia.aditya@mgh.harvard.edu.
Unlabelled:
: The last decade in oncology has witnessed impressive response rates with targeted therapies, largely because of collaborative efforts at understanding tumor biology and careful patient selection based on molecular fingerprinting of the tumor. Consequently, there has been a push toward routine molecular genotyping of tumors, and large precision medicine-based clinical trials have been launched to match therapy to the molecular alteration seen in a tumor. However, selecting the "right drug" for an individual patient in clinic is a complex decision-making process, including analytical interpretation of the report, consideration of the importance of the molecular alteration in driving growth of the tumor, tumor heterogeneity, the availability of a matched targeted therapy, efficacy and toxicity considerations of the targeted therapy (compared with standard therapy), and reimbursement issues. In this article, we review the key considerations involved in clinical decision making while reviewing a molecular genotyping report. We present the case of a 67-year-old postmenopausal female with metastatic estrogen receptor-positive (ER+) breast cancer, whose tumor progressed on multiple endocrine therapies. Molecular genotyping of the metastatic lesion revealed the presence of an ESR1 mutation (encoding p.Tyr537Asn), which was absent in the primary tumor. The same ESR1 mutation was also detected in circulating tumor DNA (ctDNA) extracted from her blood. The general approach for interpretation of genotyping results, the clinical significance of the specific mutation in the particular cancer, potential strategies to target the pathway, and implications for clinical practice are reviewed in this article.
Key Points:
ER+ breast tumors are known to undergo genomic evolution during treatment with the acquisition of new mutations that confer resistance to treatment.ESR1 mutations in the ligand-binding domain of ER can lead to a ligand-independent, constitutively active form of ER and mediate resistance to aromatase inhibitors.ESR1 mutations may be detected by genomic sequencing of tissue biopsies of the metastatic tumor or by sequencing the circulating tumor cells or tumor DNA (ctDNA).Sequencing results may lead to a therapeutic "match" with an existing FDA-approved drug or match with an experimental agent that fits the clinical setting.
Insights
Molecular genotyping identifies ESR1 mutations in metastatic ER+ breast cancer, guiding targeted therapy selection. This precision medicine approach aids in choosing the right drug for individual patients, improving treatment outcomes.
Area of Science:
- Oncology
- Genomics
- Precision Medicine
Background:
- Targeted therapies have shown impressive response rates in oncology due to advances in understanding tumor biology and molecular fingerprinting.
- Precision medicine clinical trials are increasingly matching therapies to specific molecular alterations within tumors.
- Routine molecular genotyping of tumors is becoming standard practice for personalized cancer treatment.
Observation:
- Selecting the optimal targeted therapy involves complex clinical decision-making, considering report interpretation, mutation significance, tumor heterogeneity, drug availability, efficacy, toxicity, and reimbursement.
- Genomic evolution during treatment can lead to acquired mutations, such as ESR1 mutations, conferring resistance to endocrine therapies in ER+ breast cancer.
- ESR1 mutations in the estrogen receptor ligand-binding domain can cause ligand-independent activation, mediating resistance to aromatase inhibitors.
Findings:
- Molecular genotyping of metastatic ER+ breast cancer revealed an ESR1 mutation (p.Tyr537Asn) in a patient progressing on endocrine therapy, which was absent in the primary tumor.
- The same ESR1 mutation was detected in circulating tumor DNA (ctDNA), highlighting its utility in non-invasive monitoring.
- Sequencing results can guide therapeutic matching with FDA-approved or experimental agents.
Implications:
- Interpreting molecular genotyping reports requires careful consideration of clinical significance and potential targeted strategies.
- The presence of ESR1 mutations has significant implications for clinical practice, influencing treatment selection for metastatic ER+ breast cancer.
- This case underscores the importance of molecular profiling in guiding personalized treatment decisions in advanced cancer.

