Related Experiment Video
Updated: Dec 15, 2025

Molecular and Immunologic Techniques in a Genetically Engineered Mouse Model of Gastrointestinal Stromal Tumor
Published on: May 2, 2022
An Unexpected Response to Imatinib in a "Wild-Type" Gastrointestinal Stromal Tumor
Mathilde Gheysen1, Sara Vander Borght2,3, Stefan Lehnert2,3
1Department of Internal Medicine, University Hospitals Leuven, Leuven, Belgium, mathilde.gheysen@yperman.net.
Introduction:
Gastrointestinal stromal tumors (GISTs) are the most common mesenchymal tumors of the gastrointestinal tract and the most frequent sarcomas in some geographic regions. In patients with metastatic GIST, the tyrosine kinase inhibitor imatinib is the first-line standard of care. Mutations in KIT or specific platelet-derived growth factor receptor alpha (PDGFRA) gene aberrations in the tumor cells predict a favorable response to this agent, while tumors without KIT or PDGFRA mutations ("wild-type" GISTs) are usually resistant to such treatment. Next-generation sequencing (NGS) is commonly used for mutational analysis of GISTs.
Case Presentation:
We present a case of an unexpected response to imatinib treatment in a GIST that was initially called "wild-type" based on routine NGS. A spectacular response to empirical imatinib treatment triggered further genetic analysis and led to the identification of a 45-bp duplication in KIT exon 11 undetectable by routine NGS.
Conclusion:
Negative findings on routine NGS testing for KIT alterations do not exclude the presence of actionable drug targets, as in the case of larger or complex gene insertions or deletions. Updating the NGS bioinformatics pipeline to ensure identification of larger deletions or insertions or additional Sanger sequencing is warranted in NGS driver-negative GISTs in order to allow accurate detection of actionable mutations.
More Related Videos
13:34A Combined 3D Tissue Engineered In Vitro/In Silico Lung Tumor Model for Predicting Drug Effectiveness in Specific Mutational Backgrounds
Published on: April 6, 2016
07:20A Novel Stromal Fibroblast-Modulated 3D Tumor Spheroid Model for Studying Tumor-Stroma Interaction and Drug Discovery
Published on: February 28, 2020