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An Engineered M13 Filamentous Nanoparticle As an Antigen Carrier for a Malignant Melanoma Immunotherapeutic Strategy

Overview
Journal Viruses
Publisher MDPI
Specialty Microbiology
Date 2024 Feb 24
PMID 38400008
Authors
Affiliations
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Abstract

Bacteriophages, prokaryotic viruses, hold great potential in genetic engineering to open up new avenues for vaccine development. Our study aimed to establish engineered M13 bacteriophages expressing MAGE-A1 tumor peptides as a vaccine for melanoma treatment. Through in vivo experiments, we sought to assess their ability to induce robust immune responses. Using phage display technology, we engineered two M13 bacteriophages expressing MAGE-A1 peptides as fusion proteins with either pVIII or pIIII coat proteins. Mice were intraperitoneally vaccinated three times, two weeks apart, using two different engineered bacteriophages; control groups received a wild-type bacteriophage. Serum samples taken seven days after each vaccination were analyzed by ELISA assay, while splenocytes harvested seven days following the second boost were evaluated by ex vivo cytotoxicity assay. Fusion proteins were confirmed by Western blot and nano-LC-MS/MS. The application of bacteriophages was safe, with no adverse effects on mice. Engineered bacteriophages effectively triggered immune responses, leading to increased levels of anti-MAGE-A1 antibodies in proportion to the administered bacteriophage dosage. Anti-MAGE-A1 antibodies also exhibited a binding capability to B16F10 tumor cells in vitro, as opposed to control samples. Splenocytes demonstrated enhanced CTL cytotoxicity against B16F10 cells. We have demonstrated the immunogenic capabilities of engineered M13 bacteriophages, emphasizing their potential for melanoma immunotherapy.

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References
1.
Ren S, Zhang Z, Li M, Wang D, Guo R, Fang X . Cancer testis antigen subfamilies: Attractive targets for therapeutic vaccine (Review). Int J Oncol. 2023; 62(6). PMC: 10198712. DOI: 10.3892/ijo.2023.5519. View

2.
Sanmukh S, Santos N, Barquilha C, Cucielo M, de Carvalho M, Dos Reis P . Bacteriophages M13 and T4 Increase the Expression of Anchorage-Dependent Survival Pathway Genes and Down Regulate Androgen Receptor Expression in LNCaP Prostate Cell Line. Viruses. 2021; 13(9). PMC: 8473360. DOI: 10.3390/v13091754. View

3.
Razazan A, Nicastro J, Slavcev R, Barati N, Arab A, Mosaffa F . Lambda bacteriophage nanoparticles displaying GP2, a HER2/neu derived peptide, induce prophylactic and therapeutic activities against TUBO tumor model in mice. Sci Rep. 2019; 9(1):2221. PMC: 6379380. DOI: 10.1038/s41598-018-38371-z. View

4.
Pavoni E, Vaccaro P, DAlessio V, De Santis R, Minenkova O . Simultaneous display of two large proteins on the head and tail of bacteriophage lambda. BMC Biotechnol. 2013; 13:79. PMC: 3850075. DOI: 10.1186/1472-6750-13-79. View

5.
Goracci M, Pignochino Y, Marchio S . Phage Display-Based Nanotechnology Applications in Cancer Immunotherapy. Molecules. 2020; 25(4). PMC: 7071019. DOI: 10.3390/molecules25040843. View