Journal Article
Self-assembled peptide/polymer hybrid nanoplatform for cancer immunostimulating therapies
Saeedeh Khazaei; Ruben Varela-Calviño; Mazda Rad-Malekshahi; Federico Quattrini; Safura Jokar; Nima Rezaei; Saeed Balalaie; Ismaeil Haririan; Noemi Csaba; Marcos Garcia-Fuentes
Drug Delivery and Translational Research · Vol. 14, Issue 2 · pp. 455-473 · 2024
Abstract
Integrating peptide epitopes in self-assembling materials is a successful strategy to obtain nanovaccines with high antigen density and improved efficacy. In this study, self-assembling peptides containing MAGE-A3/PADRE epitopes were designed to generate functional therapeutic nanovaccines. To achieve higher stability, peptide/polymer hybrid nanoparticles were formulated by controlled self-assembly of the engineered peptides. The nanoparticles showed good biocompatibility to both human red blood- and dendritic cells. Incubation of the nanoparticles with immature dendritic cells triggered immune effects that ultimately activated CD8 + cells. The antigen-specific and IgG antibody responses of healthy C57BL/6 mice vaccinated with the nanoparticles were analyzed. The in vivo results indicate a specific response to the nanovaccines, mainly mediated through a cellular pathway. This research indicates that the immunogenicity of peptide epitope vaccines can be effectively enhanced by developing self-assembled peptide-polymer hybrid nanostructures. Graphical Abstract
Bibliographic Information
| Journal | Drug Delivery and Translational Research |
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| Publisher | Springer |
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| Publication Date | 2024-02-01 |
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| Publication Year | 2024 |
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| Volume | 14 |
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| Issue | 2 |
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| Pages | 455-473 |
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| Document Type | Journal Article |
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| Print ISSN | 2190-393X |
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| eISSN | 2190-3948 |
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| DOI | 10.1007/s13346-023-01410-y |
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