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Updated: Jan 3, 2026

Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Discovery of actionable genetic alterations with targeted panel sequencing in children with relapsed or refractory
Ji Won Lee1, Nayoung K D Kim2,3, Soo Hyun Lee4
1Department of Pediatrics, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Republic of Korea.
Abstract:
Advances in genomic technologies and the development of targeted therapeutics are making the use of precision medicine increasingly possible. In this study, we explored whether precision medicine can be applied for the management of refractory/relapsed pediatric solid tumors by discovering actionable alterations using targeted panel sequencing. Samples of refractory/relapsed pediatric solid tumors were tested using a targeted sequencing panel covering the exonic DNA sequences of 381 cancer genes and introns across 22 genes to detect clinically significant genomic aberrations in tumors. The molecular targets were tiered from 1 to 5 based on the presence of actionable genetic alterations, strength of supporting evidence, and drug availability in the Republic of Korea. From January 2016 to October 2018, 55 patients were enrolled. The median time from tissue acquisition to drug selection was 29 d (range 14-39), and tumor profiling was successful in 53 (96.4%) patients. A total of 27 actionable alterations in tiers 1-4 were detected in 20 patients (36.4%), and the majority of actionable alterations were copy number variations. The tiers of molecular alterations were tier 1 (clinical evidence) in 4 variants, tier 2 (preclinical evidence) in 8 variants, tier 3 (consensus opinion) in 2 variants, and tier 4 (actionable variants with a drug that is available in other countries but not in the Republic of Korea) in 9 variants. In one patient with relapsed neuroblastoma with ALK F1174L mutation and ALK amplification, lorlatinib was used in a compassionate use program, and it showed some efficacy. In conclusion, using a targeted sequencing panel to discover actionable alterations in relapsed/refractory pediatric solid tumors was practical and feasible.
Insights
Precision medicine is feasible for treating relapsed/refractory pediatric solid tumors. Targeted panel sequencing identified actionable genomic alterations in over a third of patients, guiding potential therapies.
Area of Science:
- Oncology
- Genomics
- Pediatric Medicine
Background:
- Precision medicine offers targeted therapeutic strategies for cancer management.
- Relapsed/refractory pediatric solid tumors present significant treatment challenges.
- Genomic profiling is crucial for identifying actionable alterations in rare pediatric cancers.
Purpose of the Study:
- To evaluate the utility of precision medicine in managing relapsed/refractory pediatric solid tumors.
- To identify actionable genomic alterations using targeted panel sequencing in pediatric cancer patients.
- To assess the feasibility and practicality of implementing precision medicine in a clinical setting for pediatric oncology.
Main Methods:
- Targeted panel sequencing of 381 cancer genes and 22 introns was performed on pediatric solid tumor samples.
- Molecular alterations were tiered based on clinical evidence, drug availability, and supporting data.
- A cohort of 55 patients with relapsed/refractory pediatric solid tumors was enrolled between January 2016 and October 2018.
Main Results:
- Tumor profiling was successful in 96.4% of patients, with a median turnaround time of 29 days.
- Actionable alterations (tiers 1-4) were detected in 36.4% of patients, predominantly copy number variations.
- One patient with neuroblastoma harboring an ALK alteration showed partial response to lorlatinib via a compassionate use program.
Conclusions:
- Targeted panel sequencing is a practical and feasible approach for discovering actionable genomic alterations in relapsed/refractory pediatric solid tumors.
- Precision medicine holds promise for improving treatment outcomes in pediatric oncology.
- Further research is warranted to expand the application of targeted therapies in pediatric cancer.
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