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Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Real-World Data and Clinical Implications of Next-Generation Sequencing (NGS)-Based Analysis in Metastatic Breast
Fabio Canino1,2, Antonio Tornincasa3, Stefania Bettelli4
1Division of Medical Oncology, Department of Medical and Surgical Sciences for Children and Adults, University Hospital of Modena, 41124 Modena, Italy.
Abstract:
Over the last two decades, the use of Next-Generation Sequencing (NGS) in medical oncology has increased the likelihood of identifying druggable mutations that may be potentially susceptible to targeted treatments. The European Society for Medical Oncology (ESMO) currently does not recommend the use of the NGS test to determine the therapeutic course of patients with metastatic breast cancer (mBC) in daily clinical practice. However, the aim of this work is to evaluate the potential contribution of the NGS test in selecting targeted therapies for patients with mBC. Data were retrospectively collected from 101 patients diagnosed with metastatic breast cancer and treated at the Modena Cancer Center between January 2015 and April 2022. A NGS test was performed on the tumor tissue of each patient at the Laboratory of Molecular Pathology of the University Hospital of Modena. This study analyzed the clinical-pathological characteristics and mutational profile of the population using NGS tests, with a focus on actionable mutations that could be targeted in advanced stages of clinical development. The indicator of this study was to quantify the actionable mutations that resulted in a change of cancer treatment. In total, 101 patients with metastatic breast cancer were analyzed, including 86 with luminal phenotype, 10 who were HER2-positive and 5 who were triple-negative. Median age was 52 years. NGS analysis was conducted on 47 samples of primary breast cancer, 52 on metastatic sites of disease and 2 on liquid biopsies. A total of 85 gene mutations were found. The most common mutations were identified in the PIK3CA (47%), FGFR (19%) and ERBB2 genes (12%), and to a lesser extent in other genes. Of the 61 patients with pathogenic mutations, 46 (75%) had at least one actionable mutation. Of these, nine received treatment with a molecular target drug: eight patients with a mutation of the PIK3CA gene were treated with alpelisib and fulvestrant; one patient with FGFR1/2 amplifications received TAS120. Median PFS for these patients was 3.8 months. The study results show that using the NGS test on cancer tissue of metastatic breast cancer could influence the therapeutic choices, considering the small sample size and limited follow-up. About 9% of the study population had their therapy modified based on the results of NGS. The growing number of detectable mutations and increased accessibility of the test may lead to a greater number of potential therapeutic implications for the NGS assay. Perspectives suggest that NGS analysis can be implemented in daily clinical practice, particularly in contexts where a Molecular Tumor Board (MTB) is active.
Insights
Next-Generation Sequencing (NGS) identified actionable mutations in 75% of metastatic breast cancer patients, leading to targeted therapy changes in 9%. This highlights NGS
Area of Science:
- Oncology
- Genomics
- Medical Diagnostics
Background:
- Next-Generation Sequencing (NGS) has advanced cancer diagnostics, identifying targetable mutations.
- Current European Society for Medical Oncology (ESMO) guidelines do not recommend NGS for metastatic breast cancer (mBC) treatment decisions.
- Evaluating NGS's role in selecting targeted therapies for mBC is crucial.
Purpose of the Study:
- To assess the contribution of Next-Generation Sequencing (NGS) in guiding targeted therapy selection for metastatic breast cancer (mBC).
- To identify actionable mutations and their impact on treatment modification in mBC patients.
- To analyze clinical-pathological characteristics and mutational profiles in mBC.
Main Methods:
- Retrospective analysis of 101 metastatic breast cancer patients treated between January 2015 and April 2022.
- Tumor tissue samples underwent Next-Generation Sequencing (NGS) analysis.
- Focus on identifying actionable mutations and subsequent treatment changes.
Main Results:
- 85 gene mutations were detected, with PIK3CA (47%), FGFR (19%), and ERBB2 (12%) being most common.
- 46 out of 61 patients (75%) with pathogenic mutations had at least one actionable mutation.
- Nine patients received targeted therapy based on NGS results, including PIK3CA-mutated patients treated with alpelisib and fulvestrant.
Conclusions:
- Next-Generation Sequencing (NGS) testing can influence therapeutic choices in metastatic breast cancer (mBC).
- Approximately 9% of patients in the study had their treatment modified based on NGS findings.
- NGS implementation in clinical practice, especially with Molecular Tumor Boards (MTBs), holds significant potential for mBC management.

