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Targeting Epidermal Growth Factor Receptor for Cancer Treatment: Abolishing Both Kinase-Dependent and
1Department of Pharmacology and Toxicology, School of Medicine, and Massey Comprehensive Cancer Center, Virginia Commonwealth University, Richmond, Virginia yuesheng.zhang@vcuhealth.org.
Abstract:
Epidermal growth factor receptor (EGFR), a receptor tyrosine kinase, is activated by ligand binding, overexpression, or mutation. It is well known for its tyrosine kinase-dependent oncogenic activities in a variety of human cancers. A large number of EGFR inhibitors have been developed for cancer treatment, including monoclonal antibodies, tyrosine kinase inhibitors, and a vaccine. The EGFR inhibitors are aimed at inhibiting the activation or the activity of EGFR tyrosine kinase. However, these agents have shown efficacy in only a few types of cancers. Drug resistance, both intrinsic and acquired, is common even in cancers where the inhibitors have shown efficacy. The drug resistance mechanism is complex and not fully known. The key vulnerability of cancer cells that are resistant to EGFR inhibitors has not been identified. Nevertheless, it has been increasingly recognized in recent years that EGFR also possesses kinase-independent oncogenic functions and that these noncanonical functions may play a crucial role in cancer resistance to EGFR inhibitors. In this review, both kinase-dependent and -independent activities of EGFR are discussed. Also discussed are the mechanisms of actions and therapeutic activities of clinically used EGFR inhibitors and sustained EGFR overexpression and EGFR interaction with other receptor tyrosine kinases to counter the EGFR inhibitors. Moreover, this review discusses emerging experimental therapeutics that have shown potential for overcoming the limitation of the current EGFR inhibitors in preclinical studies. The findings underscore the importance and feasibility of targeting both kinase-dependent and -independent functions of EGFR to enhance therapeutic efficacy and minimize drug resistance. SIGNIFICANCE STATEMENT: EGFR is a major oncogenic driver and therapeutic target, but cancer resistance to current EGFR inhibitors remains a significant unmet clinical problem. This article reviews the cancer biology of EGFR as well as the mechanisms of actions and the therapeutic efficacies of current and emerging EGFR inhibitors. The findings could potentially lead to development of more effective treatments for EGFR-positive cancers.
Insights
Epidermal growth factor receptor (EGFR) inhibitors show limited efficacy due to drug resistance. Targeting both kinase-dependent and -independent EGFR functions may overcome resistance and improve cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Epidermal growth factor receptor (EGFR) is a key driver in many cancers, targeted by various inhibitors.
- Current EGFR inhibitors demonstrate limited efficacy and face significant challenges with intrinsic and acquired drug resistance.
- The complex mechanisms underlying EGFR inhibitor resistance are not fully understood, highlighting an unmet clinical need.
Purpose of the Study:
- To review the dual kinase-dependent and -independent oncogenic roles of EGFR.
- To discuss the mechanisms of action, therapeutic activities, and limitations of current EGFR inhibitors.
- To explore emerging therapeutics aimed at overcoming EGFR inhibitor resistance.
Main Methods:
- Literature review of EGFR biology, inhibitor mechanisms, and resistance pathways.
- Analysis of preclinical data for novel therapeutic strategies targeting EGFR.
- Synthesis of information on EGFR's interaction with other receptor tyrosine kinases.
Main Results:
- EGFR exhibits both kinase-dependent and kinase-independent oncogenic functions crucial in cancer.
- Drug resistance to EGFR inhibitors is complex, involving sustained overexpression and cross-talk with other receptor tyrosine kinases.
- Emerging experimental therapeutics show promise in preclinical studies for overcoming resistance.
Conclusions:
- Targeting both kinase-dependent and -independent EGFR functions is crucial for enhancing therapeutic efficacy.
- Developing strategies to overcome EGFR inhibitor resistance is essential for improving outcomes in EGFR-positive cancers.
- This review provides insights for developing more effective treatments for cancers driven by EGFR.
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