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Updated: Mar 4, 2026

Integration of Wet and Dry Bench Processes Optimizes Targeted Next-generation Sequencing of Low-quality and Low-quantity Tumor Biopsies
Published on: April 11, 2016
Experience with precision genomics and tumor board, indicates frequent target identification, but barriers to
Alan H Bryce1,2,3, Jan B Egan3, Mitesh J Borad1,2,3
1Hematology/Oncology, Mayo Clinic, Phoenix, AZ, U.S.A.
Background:
The ability to analyze the genomics of malignancies has opened up new possibilities for off-label targeted therapy in cancers that are refractory to standard therapy. At Mayo Clinic these efforts are organized through the Center for Individualized Medicine (CIM).
Results:
Prior to GTB, datasets were analyzed and integrated by a team of bioinformaticians and cancer biologists. Therapeutically actionable mutations were identified in 65% (92/141) of the patients tested with 32% (29/92) receiving genomically targeted therapy with FDA approved drugs or in an independent clinical trial with 45% (13/29) responding. Standard of care (SOC) options were continued by 15% (14/92) of patients tested before exhausting SOC options, with 71% (10/14) responding to treatment. Over 35% (34/92) of patients with actionable targets were not treated with 65% (22/34) choosing comfort measures or passing away.
Materials And Methods:
Patients (N = 165) were referred to the CIM Clinic between October 2012 and December 2015. All patients received clinical genomic panel testing with selected subsets receiving array comparative genomic hybridization and clinical whole exome sequencing to complement and validate panel findings. A genomic tumor board (GTB) reviewed results and, when possible, developed treatment recommendations.
Conclusions:
Treatment decisions driven by tumor genomic analysis can lead to significant clinical benefit in a minority of patients. The success of genomically driven therapy depends both on access to drugs and robustness of bioinformatics analysis. While novel clinical trial designs are increasing the utility of genomic testing, robust data sharing of outcomes is needed to optimize clinical benefit for all patients.
Insights
Genomic tumor board (GTB) analysis identified actionable mutations in 65% of cancer patients. Genomically targeted therapy showed a 45% response rate, highlighting the potential of precision medicine.
Area of Science:
- Oncology
- Genomics
- Precision Medicine
Background:
- Genomic analysis of malignancies offers new avenues for targeted therapy in refractory cancers.
- The Center for Individualized Medicine (CIM) at Mayo Clinic spearheads these efforts.
- Genomic profiling is crucial for identifying novel therapeutic strategies.
Purpose of the Study:
- To evaluate the clinical utility of genomic panel testing and a genomic tumor board (GTB) approach.
- To assess the response rates of genomically targeted therapies in cancer patients.
- To determine the feasibility of integrating genomic data into clinical decision-making.
Main Methods:
- 165 patients were referred to the CIM Clinic for genomic testing between October 2012 and December 2015.
- Clinical genomic panel testing, array comparative genomic hybridization, and whole exome sequencing were employed.
- A genomic tumor board (GTB) reviewed results to formulate treatment recommendations.
Main Results:
- Actionable mutations were identified in 65% (92/141) of patients.
- 32% (29/92) received genomically targeted therapy, with a 45% (13/29) response rate.
- 15% (14/92) continued standard of care, with a 71% (10/14) response rate.
Conclusions:
- Tumor genomic analysis can guide treatment decisions, offering clinical benefit to a subset of patients.
- The success of genomically driven therapy relies on drug accessibility and bioinformatics accuracy.
- Improved data sharing and novel clinical trial designs are essential for optimizing genomic testing benefits.
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