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Novel Cyclic Peptides for Targeting EGFR and EGRvIII Mutation for Drug Delivery
Olga Furman1,2, Alisa Zaporozhets3, Dror Tobi4,5
1Department of Chemical Engineering, Biotechnology and Materials, Ariel University, Ariel 40700, Israel.
Abstract:
The epidermal growth factor-epidermal growth factor receptor (EGF-EGFR) pathway has become the main focus of selective chemotherapeutic intervention. As a result, two classes of EGFR inhibitors have been clinically approved, namely monoclonal antibodies and small molecule kinase inhibitors. Despite an initial good response rate to these drugs, most patients develop drug resistance. Therefore, new treatment approaches are needed. In this work, we aimed to find a new EGFR-specific, short cyclic peptide, which could be used for targeted drug delivery. Phage display peptide technology and biopanning were applied to three EGFR expressing cells, including cells expressing the EGFRvIII mutation. DNA from the internalized phage was extracted and the peptide inserts were sequenced using next-generation sequencing (NGS). Eleven peptides were selected for further investigation using binding, internalization, and competition assays, and the results were confirmed by confocal microscopy and peptide docking. Among these eleven peptides, seven showed specific and selective binding and internalization into EGFR positive (EGFR+ve) cells, with two of them-P6 and P9-also demonstrating high specificity for non-small cell lung cancer (NSCLC) and glioblastoma cells, respectively. These peptides were chemically conjugated to camptothecin (CPT). The conjugates were more cytotoxic to EGFR+ve cells than free CPT. Our results describe a novel cyclic peptide, which can be used for targeted drug delivery to cells overexpressing the EGFR and EGFRvIII mutation.
Insights
Researchers identified novel cyclic peptides that target the epidermal growth factor receptor (EGFR), offering a new strategy for drug delivery to cancer cells, including those with the EGFRvIII mutation.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- The epidermal growth factor receptor (EGFR) pathway is a key target in cancer therapy.
- Current EGFR inhibitors face challenges due to acquired drug resistance.
- Novel approaches for targeted drug delivery are needed to overcome resistance.
Purpose of the Study:
- To identify a novel, EGFR-specific cyclic peptide for targeted drug delivery.
- To evaluate the peptide's efficacy in delivering cytotoxic agents to EGFR-overexpressing cells.
Main Methods:
- Phage display peptide technology and biopanning were used to screen for EGFR-binding peptides.
- Next-generation sequencing (NGS) identified potential peptide candidates.
- Binding, internalization, and competition assays, along with confocal microscopy, confirmed peptide specificity and function.
Main Results:
- Seven peptides demonstrated specific binding and internalization into EGFR-positive cells.
- Two peptides, P6 and P9, showed high specificity for non-small cell lung cancer (NSCLC) and glioblastoma cells, respectively.
- Peptide-camptothecin conjugates exhibited enhanced cytotoxicity against EGFR-positive cells compared to free camptothecin.
Conclusions:
- A novel cyclic peptide targeting EGFR and its mutations (e.g., EGFRvIII) was discovered.
- This peptide shows potential for targeted drug delivery in cancers like NSCLC and glioblastoma.
- The developed peptide conjugates represent a promising strategy to improve cancer treatment efficacy.
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