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β2-AR inhibition enhances EGFR antibody efficacy hampering the oxidative stress response machinery
Vitale Del Vecchio1, Luigi Mele1, Sameer Kumar Panda1
1Department of Experimental Medicine, University of Campania "Luigi Vanvitelli", Naples, Italy.
Abstract:
The β2-Adrenergic receptor (β2-ARs) is a cell membrane-spanning G protein-coupled receptors (GPCRs) physiologically involved in stress-related response. In many cancers, the β2-ARs signaling drives the tumor development and transformation, also promoting the resistance to the treatments. In HNSCC cell lines, the β2-AR selective inhibition synergistically amplifies the cytotoxic effect of the MEK 1/2 by affecting the p38/NF-kB oncogenic pathway and contemporary reducing the NRF-2 mediated antioxidant cell response. In this study, we aimed to validate the anti-tumor effect of β2-AR blockade and the synergism with MEK/ERK and EGFR pathway inhibition in a pre-clinical orthotopic mouse model of HNSCC. Interestingly, we found a strong β2-ARs expression in the tumors that were significantly reduced after prolonged treatment with β2-Ars inhibitor (ICI) and EGFR mAb Cetuximab (CTX) in combination. The β2-ARs down-regulation correlated in mice with a significant tumor growth delay, together with the MAPK signaling switch-off caused by the blockade of the MEK/ERK phosphorylation. We also demonstrated that the administration of ICI and CTX in combination unbalanced the cell ROS homeostasis by blocking the NRF-2 nuclear translocation with the relative down-regulation of the antioxidant enzyme expression. Our findings highlighted for the first time, in a pre-clinical in vivo model, the efficacy of the β2-ARs inhibition in the treatment of the HNSCC, remarkably in combination with CTX, which is the standard of care for unresectable HNSCC.
Insights
Blocking the beta2-adrenergic receptor (β2-AR) with ICI and Cetuximab (CTX) effectively inhibits head and neck cancer growth. This combination therapy reduces tumor progression by targeting oncogenic pathways and antioxidant responses in preclinical models.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Beta2-adrenergic receptors (β2-ARs) are GPCRs involved in stress response.
- β2-AR signaling promotes tumor development, transformation, and treatment resistance in various cancers.
- In head and neck squamous cell carcinoma (HNSCC), β2-AR inhibition enhances MEK 1/2 cytotoxicity by modulating p38/NF-kB and NRF-2 pathways.
Purpose of the Study:
- To validate the anti-tumor effects of β2-AR blockade.
- To investigate the synergistic effects of β2-AR blockade with MEK/ERK and EGFR pathway inhibition.
- To assess these combined therapies in a preclinical orthotopic HNSCC mouse model.
Main Methods:
- Utilized a preclinical orthotopic mouse model of HNSCC.
- Administered a β2-AR inhibitor (ICI) and EGFR mAb Cetuximab (CTX) in combination.
- Assessed β2-AR expression, tumor growth, MAPK signaling (MEK/ERK phosphorylation), and NRF-2 mediated antioxidant response.
Main Results:
- Significant β2-AR expression was observed in HNSCC tumors.
- Combined ICI and CTX treatment significantly reduced tumor growth and β2-AR expression.
- Therapy induced MAPK signaling pathway switch-off and blocked NRF-2 nuclear translocation, disrupting ROS homeostasis.
Conclusions:
- β2-AR inhibition demonstrates efficacy in treating HNSCC.
- Combination therapy with ICI and Cetuximab shows significant anti-tumor effects in a preclinical HNSCC model.
- This combination offers a promising therapeutic strategy for unresectable HNSCC, potentially by targeting key oncogenic and antioxidant pathways.
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