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Updated: Jan 7, 2026

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
MAPK Pathway Mutations Emerge in Mutant IDH1 Inhibitor-Resistant Cholangiocarcinoma and Attenuate the IFN Response
Jinkai Wan1, Hatice Duygu Saatcioglu2, Haley Ellis1
1Mass General Cancer Center , Harvard Medical School, Boston, Massachusetts.
Purpose:
Mutant IDH1 (mIDH1) defines a therapeutically targetable subtype of intrahepatic cholangiocarcinoma (ICC), with the mIDH1 inhibitor ivosidenib approved for advanced disease. A subset of patients experiences prolonged disease stabilization; however, the molecular basis for eventual progression remains poorly defined.
Experimental Design:
We performed molecular profiling of matched baseline and postprogression circulating tumor DNA (ctDNA) samples from patients with mIDH1 ICC enrolled in the ClarIDHy phase III trial. Functional studies were conducted to characterize candidate resistance mechanisms.
Results:
Longitudinal ctDNA analysis of 18 patients treated with ivosidenib for >6 months revealed emergent genomic alterations in multiple cases. Acquired mutations in mitogen-activated protein kinase (MAPK) pathway genes (KRAS, NRAS, MAP2K1, NF1) were identified in five cases, with instances of concurrent alterations and/or high variant allele fractions (VAF). Additional candidate resistance events included a secondary IDH1 mutation and a hotspot IDH2 mutation, detected at low VAF in the same patient. Functional studies showed that these IDH mutations conferred sustained 2-hydroxyglutarate production and ivosidenib resistance, whereas MAPK activation blunted gene expression induced by ivosidenib plus IFNγ, a key therapeutic output of mIDH1 inhibition. In parallel, baseline ctDNA profiling of 81 patients revealed that ARID1A mutations and elevated mIDH1 VAF were associated with reduced clinical benefit.
Conclusions:
MAPK pathway alterations represent a recurrent mechanism of resistance to mIDH1 inhibition in ICC, whereas emergent IDH1/IDH2 mutations appear infrequent. Functional data suggest that MAPK-mediated resistance may involve impaired IFN signaling. These results support MAPK-directed combination strategies and highlight the utility of ctDNA profiling to identify predictive and resistance biomarkers in mIDH1-driven ICC.
Insights
MAPK pathway alterations are a common cause of resistance to mutant IDH1 inhibitors in intrahepatic cholangiocarcinoma. Circulating tumor DNA profiling can identify resistance biomarkers and guide combination therapies.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Mutant IDH1 (mIDH1) is a key target in intrahepatic cholangiocarcinoma (ICC).
- Ivosidenib is approved for advanced mIDH1 ICC, but resistance mechanisms require elucidation.
- Understanding resistance is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate molecular mechanisms of resistance to ivosidenib in mIDH1 ICC.
- To identify genomic alterations associated with treatment failure.
- To explore the utility of circulating tumor DNA (ctDNA) for biomarker discovery.
Main Methods:
- Longitudinal ctDNA profiling of patients with mIDH1 ICC from the ClarIDHy trial.
- Functional studies to assess the impact of identified mutations on drug resistance.
- Analysis of baseline ctDNA to identify predictive biomarkers.
Main Results:
- Acquired MAPK-pathway mutations (KRAS, NRAS, MAP2K1, NF1) were identified as a resistance mechanism.
- Emergent IDH1/IDH2 mutations conferring resistance were detected infrequently.
- Baseline ARID1A mutations and high mIDH1 variant allele fraction correlated with reduced clinical benefit.
Conclusions:
- MAPK-pathway alterations are a significant mechanism of resistance to mIDH1 inhibition in ICC.
- Impaired interferon signaling may contribute to MAPK-mediated resistance.
- ctDNA profiling is valuable for identifying resistance biomarkers and informing combination therapy strategies.
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