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ErbB activation signatures as potential biomarkers for anti-ErbB3 treatment in HNSCC
Diego Alvarado1, Gwenda F Ligon1, Jay S Lillquist1
1Kolltan Pharmaceuticals., New Haven, Connecticut, United States of America.
Abstract:
Head and neck squamous cell carcinoma (HNSCC) accounts for 3-5% of all tumor types and remains an unmet medical need with only two targeted therapies approved to date. ErbB3 (HER3), the kinase-impaired member of the EGFR/ErbB family, has been implicated as a disease driver in a number of solid tumors, including a subset of HNSCC. Here we show that the molecular components required for ErbB3 activation, including its ligand neuregulin-1 (NRG1), are highly prevalent in HNSCC and that HER2, but not EGFR, is the major activating ErbB3 kinase partner. We demonstrate that cetuximab treatment primarily inhibits the ERK signaling pathway and KTN3379, an anti-ErbB3 monoclonal antibody, inhibits the AKT signaling pathway, and that dual ErbB receptor inhibition results in enhanced anti-tumor activity in HNSCC models. Surprisingly, we found that while NRG1 is required for ErbB3 activation, it was not sufficient to fully predict for KTN3379 activity. An evaluation of HNSCC patient samples demonstrated that NRG1 expression was significantly associated with expression of the EGFR ligands amphiregulin (AREG) and transforming growth factor α (TGFα). Furthermore, NRG1-positive HNSCC cell lines that secreted high levels of AREG and TGFα or contained high levels of EGFR homodimers (H11D) demonstrated a better response to KTN3379. Although ErbB3 and EGFR activation are uncoupled at the receptor level, their respective signaling pathways are linked through co-expression of their respective ligands. We propose that NRG1 expression and EGFR activation signatures may enrich for improved efficacy of anti-ErbB3 therapeutic mAb approaches when combined with EGFR-targeting therapies in HNSCC.
Insights
Targeting ErbB3 (HER3) with KTN3379 shows promise for head and neck squamous cell carcinoma (HNSCC). Combining ErbB3 and EGFR inhibition enhances anti-tumor activity, suggesting NRG1 and EGFR signatures may predict treatment response.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Head and neck squamous cell carcinoma (HNSCC) has limited targeted therapies.
- ErbB3 (HER3), a member of the EGFR/ErbB family, is implicated in HNSCC progression.
- Neuregulin-1 (NRG1) and its receptor ErbB3 are key in HNSCC pathogenesis.
Purpose of the Study:
- Investigate ErbB3 activation mechanisms in HNSCC.
- Evaluate the efficacy of anti-ErbB3 antibody KTN3379 and combination therapies.
- Identify predictive biomarkers for ErbB3-targeted therapies in HNSCC.
Main Methods:
- Analysis of molecular components for ErbB3 activation in HNSCC.
- Assessment of anti-tumor activity of cetuximab, KTN3379, and dual inhibition in HNSCC models.
- Evaluation of HNSCC patient samples for NRG1, AREG, TGFα expression, and EGFR homodimers.
Main Results:
- NRG1 and ErbB3 are prevalent in HNSCC, with HER2 as the primary ErbB3 kinase partner.
- KTN3379 inhibits AKT signaling, while cetuximab inhibits ERK signaling; dual inhibition shows enhanced anti-tumor effects.
- NRG1 expression correlates with AREG and TGFα, and NRG1-positive HNSCC with high AREG/TGFα or EGFR homodimers respond better to KTN3379.
Conclusions:
- ErbB3 and EGFR signaling pathways are linked via ligand co-expression in HNSCC.
- NRG1 expression and EGFR activation signatures may identify HNSCC patients likely to benefit from combined anti-ErbB3 and anti-EGFR therapies.
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