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Updated: May 28, 2026

Robotic Duodenal Sleeve Resection for Gastrointestinal Stromal Tumor with Rare Exon 8 KIT Mutation Following Neoadjuvant Imatinib
Published on: April 3, 2026
Fibroblast growth factor receptor inhibition for succinate dehydrogenase-deficient gastrointestinal stromal tumors: a
Priscilla Merriam1, James J Morrow2,3,4, Emanuele Mazzola1
1Dana-Farber Cancer Institute, Boston, MA, USA.
Abstract:
While most gastrointestinal stromal tumors are driven by oncogenic mutations in KIT or PDGFRA, 10-15% exhibit functional loss of the succinate dehydrogenase (SDH) complex and genome-wide DNA hypermethylation. Excess methylation in SDH-deficient gastrointestinal stromal tumors disrupts genomic insulators, inducing aberrant expression of oncogenic ligands FGF3, FGF4, and activating an autocrine signaling loop mediated through FGFR1. We conducted a phase 2 trial of pan-fibroblast growth factor receptor inhibitor rogaratinib in patients with sarcoma and report here on the cohort of patients with advanced SDH-deficient GIST. The primary objective was to estimate objective response rate. Secondary objectives were to estimate progression-free survival (PFS) and assess safety and tolerability. Exploratory objectives were to evaluate serial measurements of FGF3 and FGF4 and fibroblast growth factor receptors in serial biopsies, to perform whole-exome sequencing in serial biopsies and to explore rogaratinib exposure with pharmacodynamic effects. Twenty-four patients received rogaratinib and ten experienced partial responses for an objective response rate of 41.7%. Median PFS was 31.0 months (95% confidence interval 20.2-not reached), and 1-year PFS was 77.4% (95% confidence interval 61.7-97.1). Toxicities were manageable and included hyperphosphatemia, fatigue and diarrhea. Elevations in phosphorous were seen across the cohort, consistent with target engagement of FGFR1. Whole-exome and next-generation sequencing revealed alterations in the SDH subunit coding genes (SDHx) as expected. This trial illustrates a successful demonstration of targeted cancer therapy predicated on an epigenetic mechanism of oncogene activation. Clinicaltrials.gov identifier: NCT04595747 .
Insights
A phase 2 trial shows rogaratinib effectively treats advanced SDH-deficient gastrointestinal stromal tumors (GIST) by targeting fibroblast growth factor receptors, demonstrating a 41.7% objective response rate and manageable toxicity.
Area of Science:
- Oncology
- Gastroenterology
- Molecular Biology
Background:
- Most gastrointestinal stromal tumors (GIST) arise from KIT or PDGFRA mutations.
- A subset of GIST (10-15%) lacks succinate dehydrogenase (SDH) function, leading to DNA hypermethylation and aberrant oncogenic signaling.
- This aberrant signaling involves FGF3/FGF4 ligands and FGFR1 activation, creating an autocrine loop in SDH-deficient GIST.
Purpose of the Study:
- To evaluate the efficacy and safety of the pan-fibroblast growth factor receptor inhibitor rogaratinib in patients with advanced SDH-deficient GIST.
- Primary objective: Assess the objective response rate (ORR).
- Secondary objectives: Determine progression-free survival (PFS), safety, and tolerability.
Main Methods:
- A phase 2 clinical trial was conducted involving patients with advanced SDH-deficient GIST.
- Patients received the pan-fibroblast growth factor receptor inhibitor rogaratinib.
- Exploratory analyses included serial biopsies for FGF3/FGF4 and FGFR1 measurements, whole-exome sequencing, and pharmacokinetic/pharmacodynamic assessments.
Main Results:
- Twenty-four patients were treated with rogaratinib, with ten achieving partial responses, yielding an ORR of 41.7%.
- Median PFS was 31.0 months, with a 1-year PFS rate of 77.4%.
- Manageable toxicities included hyperphosphatemia, fatigue, and diarrhea, with elevated phosphorous indicating target engagement.
Conclusions:
- Rogaratinib demonstrates significant efficacy in patients with advanced SDH-deficient GIST, achieving a notable ORR and prolonged PFS.
- The study validates a targeted therapy approach based on an epigenetic mechanism of oncogene activation in GIST.
- This trial highlights the potential of FGFR inhibition in a specific molecular subtype of GIST.
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