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Updated: May 22, 2026

Detecting Somatic Genetic Alterations in Tumor Specimens by Exon Capture and Massively Parallel Sequencing
Published on: October 18, 2013
High-throughput detection of actionable genomic alterations in clinical tumor samples by targeted, massively parallel
Nikhil Wagle1, Michael F Berger, Matthew J Davis
1Department of Medical Oncology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts, USA.
Unlabelled:
Knowledge of "actionable" somatic genomic alterations present in each tumor (e.g., point mutations, small insertions/deletions, and copy-number alterations that direct therapeutic options) should facilitate individualized approaches to cancer treatment. However, clinical implementation of systematic genomic profiling has rarely been achieved beyond limited numbers of oncogene point mutations. To address this challenge, we utilized a targeted, massively parallel sequencing approach to detect tumor genomic alterations in formalin-fixed, paraffin-embedded (FFPE) tumor samples. Nearly 400-fold mean sequence coverage was achieved, and single-nucleotide sequence variants, small insertions/deletions, and chromosomal copynumber alterations were detected simultaneously with high accuracy compared with other methods in clinical use. Putatively actionable genomic alterations, including those that predict sensitivity or resistance to established and experimental therapies, were detected in each tumor sample tested. Thus, targeted deep sequencing of clinical tumor material may enable mutation-driven clinical trials and, ultimately, "personalized" cancer treatment.
Significance:
Despite the rapid proliferation of targeted therapeutic agents, systematic methods to profile clinically relevant tumor genomic alterations remain underdeveloped. We describe a sequencingbased approach to identifying genomic alterations in FFPE tumor samples. These studies affirm the feasibility and clinical utility of targeted sequencing in the oncology arena and provide a foundation for genomics-based stratification of cancer patients.
Insights
Targeted deep sequencing accurately identifies actionable genomic alterations in FFPE tumor samples. This approach enables personalized cancer treatment and facilitates mutation-driven clinical trials.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Clinical implementation of systematic tumor genomic profiling is limited, hindering personalized cancer treatment.
- Actionable somatic genomic alterations guide therapeutic options but are rarely profiled comprehensively.
Purpose of the Study:
- To develop and validate a targeted, massively parallel sequencing approach for detecting genomic alterations in FFPE tumor samples.
- To enable individualized cancer treatment through comprehensive genomic profiling.
Main Methods:
- Utilized targeted, massively parallel sequencing with high coverage (nearly 400-fold mean) on FFPE tumor samples.
- Simultaneously detected single-nucleotide variants, small insertions/deletions, and copy-number alterations.
Main Results:
- High accuracy in detecting various genomic alterations compared to existing clinical methods.
- Putatively actionable genomic alterations, predicting therapy response, were identified in all tested tumor samples.
Conclusions:
- Targeted deep sequencing is a feasible and clinically useful method for profiling tumor genomic alterations in FFPE samples.
- This approach supports genomics-based patient stratification and personalized cancer therapy.
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