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Genomic Heterogeneity as a Barrier to Precision Medicine in Gastroesophageal Adenocarcinoma
Eirini Pectasides1,2, Matthew D Stachler1,3, Sarah Derks1,4
1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts.
Abstract:
Gastroesophageal adenocarcinoma (GEA) is a lethal disease where targeted therapies, even when guided by genomic biomarkers, have had limited efficacy. A potential reason for the failure of such therapies is that genomic profiling results could commonly differ between the primary and metastatic tumors. To evaluate genomic heterogeneity, we sequenced paired primary GEA and synchronous metastatic lesions across multiple cohorts, finding extensive differences in genomic alterations, including discrepancies in potentially clinically relevant alterations. Multiregion sequencing showed significant discrepancy within the primary tumor (PT) and between the PT and disseminated disease, with oncogene amplification profiles commonly discordant. In addition, a pilot analysis of cell-free DNA (cfDNA) sequencing demonstrated the feasibility of detecting genomic amplifications not detected in PT sampling. Lastly, we profiled paired primary tumors, metastatic tumors, and cfDNA from patients enrolled in the personalized antibodies for GEA (PANGEA) trial of targeted therapies in GEA and found that genomic biomarkers were recurrently discrepant between the PT and untreated metastases. Divergent primary and metastatic tissue profiling led to treatment reassignment in 32% (9/28) of patients. In discordant primary and metastatic lesions, we found 87.5% concordance for targetable alterations in metastatic tissue and cfDNA, suggesting the potential for cfDNA profiling to enhance selection of therapy.Significance: We demonstrate frequent baseline heterogeneity in targetable genomic alterations in GEA, indicating that current tissue sampling practices for biomarker testing do not effectively guide precision medicine in this disease and that routine profiling of metastatic lesions and/or cfDNA should be systematically evaluated. Cancer Discov; 8(1); 37-48. ©2017 AACR.See related commentary by Sundar and Tan, p. 14See related article by Janjigian et al., p. 49This article is highlighted in the In This Issue feature, p. 1.
Insights
Genomic profiling of gastroesophageal adenocarcinoma (GEA) reveals significant differences between primary and metastatic tumors. This tumor heterogeneity impacts targeted therapy efficacy, suggesting cfDNA analysis for better treatment selection.
Area of Science:
- Oncology
- Genomics
- Precision Medicine
Background:
- Gastroesophageal adenocarcinoma (GEA) poses a significant challenge due to limited efficacy of targeted therapies.
- Genomic biomarker discrepancies between primary and metastatic tumors may explain treatment failures.
Purpose of the Study:
- To evaluate genomic heterogeneity in GEA by comparing primary and metastatic tumor alterations.
- To assess the utility of cell-free DNA (cfDNA) for detecting actionable genomic alterations.
Main Methods:
- Sequencing of paired primary GEA and synchronous metastatic lesions across multiple cohorts.
- Multiregion sequencing of primary tumors and pilot cfDNA sequencing.
- Profiling of paired primary tumors, metastatic tumors, and cfDNA from the PANGEA trial.
Main Results:
- Extensive genomic differences observed between primary and metastatic GEA, including clinically relevant alterations.
- Significant discrepancies found within primary tumors and between primary and metastatic sites, with discordant oncogene amplification profiles.
- cfDNA sequencing demonstrated feasibility in detecting amplifications missed by primary tumor sampling.
- Profiling of PANGEA trial patients showed recurrent genomic biomarker discrepancies, leading to treatment reassignment in 32% of cases.
- High concordance (87.5%) for targetable alterations between metastatic tissue and cfDNA in discordant cases.
Conclusions:
- Frequent baseline heterogeneity in targetable genomic alterations in GEA necessitates re-evaluation of current tissue sampling practices.
- Standard biomarker testing may not effectively guide precision medicine in GEA due to tumor heterogeneity.
- Routine profiling of metastatic lesions and/or cfDNA should be systematically evaluated to improve targeted therapy selection in GEA.
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