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Updated: Jun 17, 2025

Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Clinical application of whole-genome sequencing of solid tumors for precision oncology
Ryul Kim1, Seokhwi Kim2, Brian Baek-Lok Oh1
1Inocras, San Diego, CA, USA.
Abstract:
Genomic alterations in tumors play a pivotal role in determining their clinical trajectory and responsiveness to treatment. Targeted panel sequencing (TPS) has served as a key clinical tool over the past decade, but advancements in sequencing costs and bioinformatics have now made whole-genome sequencing (WGS) a feasible single-assay approach for almost all cancer genomes in clinical settings. This paper reports on the findings of a prospective, single-center study exploring the real-world clinical utility of WGS (tumor and matched normal tissues) and has two primary objectives: (1) assessing actionability for therapeutic options and (2) providing clarity for clinical questions. Of the 120 patients with various solid cancers who were enrolled, 95 (79%) successfully received genomic reports within a median of 11 working days from sampling to reporting. Analysis of these 95 WGS reports revealed that 72% (68/95) yielded clinically relevant insights, with 69% (55/79) pertaining to therapeutic actionability and 81% (13/16) pertaining to clinical clarity. These benefits include the selection of informed therapeutics and/or active clinical trials based on the identification of driver mutations, tumor mutational burden (TMB) and mutational signatures, pathogenic germline variants that warrant genetic counseling, and information helpful for inferring cancer origin. Our findings highlight the potential of WGS as a comprehensive tool in precision oncology and suggests that it should be integrated into routine clinical practice to provide a complete image of the genomic landscape to enable tailored cancer management.
Insights
Whole-genome sequencing (WGS) provides clinically relevant genomic insights for cancer patients. This comprehensive approach aids in selecting targeted therapies and offers clarity for complex clinical questions, supporting precision oncology.
Area of Science:
- Genomics
- Oncology
- Clinical Diagnostics
Background:
- Genomic alterations are crucial for cancer progression and treatment response.
- Targeted panel sequencing (TPS) has been a standard, but whole-genome sequencing (WGS) is now clinically feasible.
- Advancements in sequencing and bioinformatics enable WGS for routine cancer genome analysis.
Purpose of the Study:
- To evaluate the real-world clinical utility of WGS in solid tumors.
- To assess WGS for therapeutic actionability and clinical question clarity.
- To explore WGS as a comprehensive tool in precision oncology.
Main Methods:
- Prospective, single-center study of 120 patients with various solid cancers.
- Whole-genome sequencing (WGS) of tumor and matched normal tissues.
- Analysis of WGS reports for actionable insights and clinical clarity.
Main Results:
- Genomic reports were successfully delivered to 95% (79%) of patients within 11 working days.
- 72% (68/95) of WGS reports provided clinically relevant insights.
- Insights included therapeutic actionability (69%) and clinical clarity (81%), identifying driver mutations, TMB, mutational signatures, and germline variants.
Conclusions:
- WGS is a powerful, comprehensive tool for precision oncology.
- WGS offers actionable therapeutic options and clinical clarity in cancer management.
- Integration of WGS into routine clinical practice is recommended for tailored cancer care.
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