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Induction of anti-EGFR immune response with mimotopes identified from a phage display peptide library by panitumumab
Aidong Wang1, Ming Cui1, Hong Qu2
1Key laboratory of Carcinogenesis and Translational Research (Ministry of Education), Department of Gastrointestinal Surgery IV, Peking University Cancer Hospital & Institute, Beijing 100142, China.
Abstract:
The epidermal growth factor receptor (EGFR) is overexpressed in several epithelial tumors. Anti-EGFR humanized monoclonal antibodies, cetuximab and panitumumab, in combination with chemotherapy have improved the prognosis for patients with wild-type RAS tumors. To identify mimotopes of EGFR and develop mimotope-based EGFR vaccines, we screened a phage display peptide library with panitumumab. Two EGFR mimotopes P19 and P26, which could be recognized by panitumumab specifically, were isolated. To enhance the immune responses, we generated recombinant proteins of P19 or P26 fused to a heat-shock cognate protein 70 (Hsc70), and evaluated the efficacy of Hsc70-P19 and Hsc70-P26 as vaccines in vivo. Immunization with Hsc70-P19 or Hsc70-P26 fusion protein stimulated the immune system to produce specific antibodies against peptides as well as EGFR. Moreover, antibodies elicited against mimotopes could induce antibody-dependent cellular cytotoxicity (ADCC), complement-dependent cytotoxicity (CDC), and inhibit the proliferation of EGFR-overexpressing A431 cells. Treatment with Hsc70-P19 and Hsc70-P26 significantly reduced tumor growth in BALB/c transplantable lung cancer models. Although there was no sequence homology between the phage-derived peptides and EGFR by alignments, both peptides mimic the conformational structure of EGFR binding to panitumumab. In conclusion, the mimotopes we identified from phage display peptide library could be promising candidate vaccines for active anti-EGFR immunotherapy against cancers.
Insights
Researchers developed novel epidermal growth factor receptor (EGFR) mimotope vaccines, Hsc70-P19 and Hsc70-P26, which effectively reduced tumor growth in preclinical models. These mimotopes show promise for active anti-EGFR immunotherapy in cancer treatment.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Epidermal growth factor receptor (EGFR) overexpression is common in epithelial cancers.
- Monoclonal antibodies targeting EGFR, like cetuximab and panitumumab, improve outcomes for specific patient groups.
- Development of novel anti-EGFR strategies, including vaccines, is crucial for cancer therapy.
Purpose of the Study:
- To identify mimotopes of EGFR using phage display technology.
- To develop and evaluate mimotope-based vaccines for active anti-EGFR immunotherapy.
- To assess the efficacy of Hsc70-P19 and Hsc70-P26 fusion proteins as cancer vaccines.
Main Methods:
- Screening a phage display peptide library with panitumumab to isolate EGFR mimotopes.
- Generating recombinant fusion proteins (Hsc70-P19, Hsc70-P26) for immunization.
- Evaluating vaccine efficacy in vitro (cytotoxicity assays) and in vivo (tumor growth inhibition in mouse models).
Main Results:
- Two specific EGFR mimotopes, P19 and P26, were identified.
- Immunization with Hsc70-P19 and Hsc70-P26 elicited antibodies against EGFR and induced cytotoxic effects (ADCC, CDC).
- Vaccine treatment significantly inhibited tumor growth in a lung cancer model.
Conclusions:
- Identified mimotopes P19 and P26 mimic EGFR's conformational structure recognized by panitumumab.
- Hsc70-P19 and Hsc70-P26 fusion proteins serve as effective vaccine candidates for active anti-EGFR immunotherapy.
- These mimotope-based vaccines demonstrate potential for cancer treatment by stimulating specific immune responses against EGFR.
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