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Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
Randomized, placebo-controlled window trial of EGFR, Src, or combined blockade in head and neck cancer
Julie E Bauman1, Umamaheswar Duvvuri2, William E Gooding3
1Department of Medicine and.
Abstract:
BACKGROUND. EGFR and Src family kinases are upregulated in head and neck squamous cell carcinoma (HNSCC). EGFR interacts with Src to activate STAT3 signaling, and dual EGFR-Src targeting is synergistic in HNSCC preclinical models. pSrc overexpression predicted resistance to the EGFR inhibitor, erlotinib, in a prior window trial. We conducted a 4-arm window trial to identify biomarkers associated with response to EGFR and/or Src inhibition. METHODS. Patients with operable stage II-IVa HNSCC were randomized to 7-21 days of neoadjuvant erlotinib, the Src inhibitor dasatinib, the combination of both, or placebo. Paired tumor specimens were collected before and after treatment. Pharmacodynamic expression of EGFR and Src pathway components was evaluated by IHC of tissue microarrays and reverse-phase protein array of tissue lysates. Candidate biomarkers were assessed for correlation with change in tumor size. RESULTS. From April 2009 to December 2012, 58 patients were randomized and 55 were treated. There was a significant decrease in tumor size in both erlotinib arms (P = 0.0014); however, no effect was seen with dasatinib alone (P = 0.24). High baseline pMAPK expression was associated with response to erlotinib (P = 0.03). High baseline pSTAT3 was associated with resistance to dasatinib (P = 0.099). CONCLUSIONS. Brief exposure to erlotinib significantly decreased tumor size in operable HNSCC, with no additive effect from dasatinib. Baseline pMAPK expression warrants further study as a response biomarker for anti-EGFR therapy. Basal expression of pSTAT3 may be independent of Src, explain therapeutic resistance, and preclude development of dasatinib in biomarker-unselected cohorts. TRIAL REGISTRATION. NCT00779389. FUNDING. National Cancer Institute, American Cancer Society, Pennsylvania Department of Health, V Foundation for Cancer Research, Bristol-Myers Squibb, and Astellas Pharma.
Insights
Erlotinib significantly reduced head and neck cancer tumor size, but dasatinib did not. pMAPK may predict response to EGFR inhibitors, while pSTAT3 could indicate resistance to Src inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Clinical Trials
Background:
- Epidermal Growth Factor Receptor (EGFR) and Src family kinases are often overexpressed in head and neck squamous cell carcinoma (HNSCC).
- EGFR and Src signaling pathways converge on STAT3 activation, and combined inhibition shows promise in preclinical HNSCC models.
- Prior studies indicated that high pSrc levels correlated with resistance to erlotinib, an EGFR inhibitor.
Purpose of the Study:
- To investigate biomarkers predicting response to EGFR and/or Src inhibition in HNSCC.
- To evaluate the efficacy of neoadjuvant erlotinib, dasatinib, or their combination in operable HNSCC patients.
Main Methods:
- A 4-arm window trial randomized 58 patients with operable stage II-IVa HNSCC to neoadjuvant erlotinib, dasatinib, combination therapy, or placebo for 7-21 days.
- Paired tumor biopsies were analyzed pre- and post-treatment using immunohistochemistry and reverse-phase protein arrays to assess EGFR and Src pathway components.
- Candidate biomarkers were correlated with changes in tumor size.
Main Results:
- Erlotinib treatment led to a significant decrease in tumor size (P = 0.0014), while dasatinib monotherapy showed no significant effect (P = 0.24).
- High baseline pMAPK expression was associated with a positive response to erlotinib (P = 0.03).
- Elevated baseline pSTAT3 levels were linked to resistance to dasatinib (P = 0.099).
Conclusions:
- Neoadjuvant erlotinib effectively reduced tumor size in operable HNSCC, with no added benefit from concurrent dasatinib.
- Baseline pMAPK expression is a potential biomarker for predicting response to anti-EGFR therapy.
- pSTAT3 expression may be independent of Src signaling and could explain resistance to dasatinib, suggesting its limited utility in unselected patient groups.
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