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Updated: Jul 4, 2026

A Simple Bioassay for the Evaluation of Vascular Endothelial Growth Factors
Published on: March 15, 2016
Combined targeting of EGFR-dependent and VEGF-dependent pathways: rationale, preclinical studies and clinical
Giampaolo Tortora1, Fortunato Ciardiello, Giampietro Gasparini
1Clinical Unit and Laboratories of Molecular Therapy at the University of Naples Federico II, Naples, Italy. gtortora@unina.it
Abstract:
Cellular heterogeneity, redundancy of molecular pathways and effects of the microenvironment contribute to the survival, motility and metastasis of cells in solid tumors. It is unlikely that tumors are entirely dependent on only one abnormally activated signaling pathway; consequently, treatment with an agent that interferes with a single target may be insufficient. Combined blockade of functionally linked and relevant multiple targets has become an attractive therapeutic strategy. The EGFR and ERBB2 (HER2) pathways and VEGF-dependent angiogenesis have a pivotal role in cancer pathogenesis and progression. Robust experimental evidence has shown that these pathways are functionally linked and has demonstrated a suggested role for VEGF in the acquired resistance to anti-ERBB drugs when these receptors are pharmacologically blocked. Combined inhibition of ERBB and VEGF signaling interferes with a molecular feedback loop responsible for acquired resistance to anti-ERBB agents and promotes apoptosis while ablating tumor-induced angiogenesis. To this aim, either two agents highly selective against VEGF and ERBB respectively, or, alternatively, a single multitargeted agent, can be used. Preclinical studies have proven the efficacy of both these approaches and early clinical studies have provided encouraging results. This Review discusses the experimental rationale for, preclinical studies of and clinical trials on combined blockade of ERBB and VEGF signaling.
Insights
Combining therapies targeting the Epidermal Growth Factor Receptor (EGFR) and Vascular Endothelial Growth Factor (VEGF) pathways can overcome cancer resistance. This dual blockade promotes apoptosis and inhibits tumor angiogenesis, offering a promising therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Tumor survival, motility, and metastasis are driven by cellular heterogeneity, redundant pathways, and microenvironment.
- Single-target therapies are often insufficient due to tumor adaptability and pathway redundancy.
- The Epidermal Growth Factor Receptor (EGFR), ERBB2 (HER2), and Vascular Endothelial Growth Factor (VEGF) pathways are crucial in cancer progression.
Purpose of the Study:
- To review the rationale, preclinical evidence, and clinical trials for combined blockade of ERBB and VEGF signaling.
- To explore the therapeutic potential of targeting multiple key signaling pathways in solid tumors.
Main Methods:
- Review of experimental rationale, preclinical studies, and clinical trials.
- Analysis of the functional linkage between ERBB and VEGF pathways.
- Investigation of mechanisms of acquired resistance to anti-ERBB agents.
Main Results:
- Combined inhibition of ERBB and VEGF signaling disrupts feedback loops causing resistance to anti-ERBB agents.
- This combined approach promotes cancer cell apoptosis.
- Simultaneous blockade effectively ablates tumor-induced angiogenesis.
Conclusions:
- Combined blockade of ERBB and VEGF signaling is a viable strategy to overcome therapeutic resistance in solid tumors.
- Both dual-agent and multitargeted single-agent approaches show efficacy.
- Early clinical studies indicate encouraging results for this combined therapeutic strategy.
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