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Building Up a High-throughput Screening Platform to Assess the Heterogeneity of HER2 Gene Amplification in Breast Cancers
Published on: December 5, 2017
Intratumor heterogeneity defines treatment-resistant HER2+ breast tumors
Inga H Rye1, Anne Trinh2, Anna B Saetersdal3
1Department of Cancer Genetics, Institute for Cancer Research, Oslo University Hospital Radiumhospitalet, Norway.
Abstract:
Targeted therapy for patients with HER2-positive (HER2+) breast cancer has improved overall survival, but many patients still suffer relapse and death from the disease. Intratumor heterogeneity of both estrogen receptor (ER) and HER2 expression has been proposed to play a key role in treatment failure, but little work has been done to comprehensively study this heterogeneity at the single-cell level. In this study, we explored the clinical impact of intratumor heterogeneity of ER protein expression, HER2 protein expression, and HER2 gene copy number alterations. Using combined immunofluorescence and in situ hybridization on tissue sections followed by a validated computational approach, we analyzed more than 13 000 single tumor cells across 37 HER2+ breast tumors. The samples were taken both before and after neoadjuvant chemotherapy plus HER2-targeted treatment, enabling us to study tumor evolution as well. We found that intratumor heterogeneity for HER2 copy number varied substantially between patient samples. Highly heterogeneous tumors were associated with significantly shorter disease-free survival and fewer long-term survivors. Patients for which HER2 characteristics did not change during treatment had a significantly worse outcome. This work shows the impact of intratumor heterogeneity in molecular diagnostics for treatment selection in HER2+ breast cancer patients and the power of computational scoring methods to evaluate in situ molecular markers in tissue biopsies.
Insights
Intratumor heterogeneity in HER2-positive breast cancer impacts treatment outcomes. Tumors with varied HER2 copy numbers show worse survival, highlighting heterogeneity
Area of Science:
- Oncology
- Molecular Diagnostics
- Genomics
Background:
- HER2-targeted therapy improves survival for HER2-positive breast cancer.
- Treatment failure and relapse persist despite targeted therapies.
- Intratumor heterogeneity is implicated in treatment resistance but poorly understood at the single-cell level.
Purpose of the Study:
- To investigate the clinical impact of intratumor heterogeneity in ER and HER2 expression and HER2 gene copy number alterations.
- To analyze tumor evolution under neoadjuvant chemotherapy and HER2-targeted treatment.
- To assess heterogeneity at the single-cell level using computational methods.
Main Methods:
- Combined immunofluorescence and in situ hybridization on tissue sections.
- Computational analysis of over 13,000 single tumor cells from 37 HER2+ breast tumors.
- Analysis of tumor samples before and after neoadjuvant treatment.
Main Results:
- Substantial variation in HER2 copy number heterogeneity observed across patient samples.
- Highly heterogeneous tumors were linked to significantly shorter disease-free survival.
- Lack of change in HER2 characteristics during treatment correlated with worse patient outcomes.
Conclusions:
- Intratumor heterogeneity significantly impacts treatment selection and outcomes in HER2+ breast cancer.
- Computational scoring of in situ molecular markers is a powerful tool for evaluating tissue biopsies.
- Understanding heterogeneity is crucial for improving therapeutic strategies in HER2+ breast cancer.
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