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Updated: May 1, 2026

Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
RAS/PI3K crosstalk and cetuximab resistance in head and neck squamous cell carcinoma
T Rampias1, A Giagini1, S Siolos1
1Authors' Affiliations: Department of Surgery, Yale University School of Medicine, New Haven, Connecticut; Department of Medicine, Attikon Hospital; and Department of Biochemistry and Molecular Biology, Faculty of Biology, National Kapodistrian University of Athens, University of Athens, Greece.
Purpose:
Cetuximab, an antibody directed against the EGF receptor, is an effective clinical therapy for patients with head and neck squamous cell cancer (HNSCC). Despite great clinical promise, intrinsic or acquired cetuximab resistance hinders successful treatment outcomes but little is known about the underlying mechanism.
Experimental Design:
To study the role of oncogenic HRAS in cetuximab resistance in HNSCC, the frequency of oncogenic HRAS mutations was determined in a cohort of 180 genomic DNAs from head and neck cancer specimens. We also used a combination of cetuximab-resistant cell lines and a transgenic mouse model of RAS-driven oral cancer to identify an oncogenic RAS-specific gene expression signature that promotes cetuximab resistance.
Results:
Here, we show that activation of RAS signaling leads to persistent extracellular signal-regulated kinase 1/2 signaling and consequently to cetuximab resistance. HRAS depletion in cells containing oncogenic HRAS or PIK3CA restored cetuximab sensitivity. In our study, the gene expression signature of c-MYC, BCL-2, BCL-XL, and cyclin D1 upon activation of MAPK signaling was not altered by cetuximab treatment, suggesting that this signature may have a pivotal role in cetuximab resistance of RAS-activated HNSCC. Finally, a subset of patients with head and neck cancer with oncogenic HRAS mutations was found to exhibit de novo resistance to cetuximab-based therapy.
Conclusions:
Collectively, these findings identify a distinct cetuximab resistance mechanism. Oncogenic HRAS in HNSCC promotes activation of ERK signaling, which in turn mediates cetuximab resistance through a specific gene expression signature. Clin Cancer Res; 20(11); 2933-46. ©2014 AACR.
Insights
Oncogenic HRAS mutations in head and neck cancer activate ERK signaling, causing resistance to cetuximab therapy. Targeting HRAS can restore sensitivity, offering new treatment strategies for HNSCC patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Cetuximab targets the EGF receptor and is effective for head and neck squamous cell cancer (HNSCC).
- Intrinsic or acquired resistance to cetuximab limits treatment success in HNSCC.
- The mechanisms underlying cetuximab resistance are not fully understood.
Purpose of the Study:
- To investigate the role of oncogenic HRAS in cetuximab resistance in HNSCC.
- To identify a gene expression signature associated with RAS-driven cetuximab resistance.
Main Methods:
- Analysis of HRAS mutations in 180 HNSCC specimens.
- Utilized cetuximab-resistant cell lines and a transgenic mouse model of RAS-driven oral cancer.
- Identified an oncogenic RAS-specific gene expression signature.
Main Results:
- Activation of RAS signaling leads to persistent ERK1/2 signaling and cetuximab resistance.
- HRAS depletion restored cetuximab sensitivity in cells with oncogenic HRAS or PIK3CA.
- A subset of HNSCC patients with HRAS mutations showed de novo resistance to cetuximab.
Conclusions:
- Oncogenic HRAS promotes cetuximab resistance in HNSCC via ERK signaling activation.
- A specific gene expression signature is implicated in RAS-activated HNSCC resistance.
- Findings reveal a distinct mechanism of cetuximab resistance driven by oncogenic HRAS.
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