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A Novel Approach to the Development of Anticarcinogenic Vaccines

Human exposure to chemical carcinogens is an important etiological factor in cancer diseases. In this article, we will discuss a new approach to the development of anticarcinogenic vaccines. The main task in our research was to select a benzo[a]pyrene immunomimetic peptide considered as a hapten-spe...

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Autores principales: Glushkov, A.N., Apalko, S.V., Filipenko, M.L., Matveeva, V.A., Bakulina, A.Yu., Lunin, V.G., Kostyanko, M.V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: A.I. Gordeyev 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347585/
https://www.ncbi.nlm.nih.gov/pubmed/22649670
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author Glushkov, A.N.
Apalko, S.V.
Filipenko, M.L.
Matveeva, V.A.
Bakulina, A.Yu.
Lunin, V.G.
Kostyanko, M.V.
author_facet Glushkov, A.N.
Apalko, S.V.
Filipenko, M.L.
Matveeva, V.A.
Bakulina, A.Yu.
Lunin, V.G.
Kostyanko, M.V.
author_sort Glushkov, A.N.
collection PubMed
description Human exposure to chemical carcinogens is an important etiological factor in cancer diseases. In this article, we will discuss a new approach to the development of anticarcinogenic vaccines. The main task in our research was to select a benzo[a]pyrene immunomimetic peptide considered as a hapten-specific component. For this purpose, we synthesized carcinogen-protein conjugates and prepared mono- and polyclonal antibodies to benzo[a]pyrene. Phage display technology was used to select the benzo[a]pyrene immunomimetic peptide, followed by an evaluation of the immunological properties of the obtained peptide. The obtained benzo[a]pyrene immunomimetic peptide could only simulate chemical carcinogens in the frame of the pIII protein. As a result, we prepared a recombinant protein composed of the benzo[a]pyrene immunomimetic peptide and pIII-encoding sequences. Using ELISA, we demonstrated that the recombinant protein specifically interacts with the anti-benzo[a]pyrene monoclonal antibody (mAB B2). Using molecular modeling, we predicted the 3-D structure of the mAB B2 active center and analyzed the characteristics of its interaction with different polycyclic aromatic hydrocarbons, as well as with the benzo[a]pyrene immunomimetic peptide. Thus, a comprehensive analysis of the results of the obtainment of hapten-specific components of anticarcinogenic vaccines allowed us to outline a strategy for future development in this direction.
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spelling pubmed-33475852012-05-30 A Novel Approach to the Development of Anticarcinogenic Vaccines Glushkov, A.N. Apalko, S.V. Filipenko, M.L. Matveeva, V.A. Bakulina, A.Yu. Lunin, V.G. Kostyanko, M.V. Acta Naturae Research Article Human exposure to chemical carcinogens is an important etiological factor in cancer diseases. In this article, we will discuss a new approach to the development of anticarcinogenic vaccines. The main task in our research was to select a benzo[a]pyrene immunomimetic peptide considered as a hapten-specific component. For this purpose, we synthesized carcinogen-protein conjugates and prepared mono- and polyclonal antibodies to benzo[a]pyrene. Phage display technology was used to select the benzo[a]pyrene immunomimetic peptide, followed by an evaluation of the immunological properties of the obtained peptide. The obtained benzo[a]pyrene immunomimetic peptide could only simulate chemical carcinogens in the frame of the pIII protein. As a result, we prepared a recombinant protein composed of the benzo[a]pyrene immunomimetic peptide and pIII-encoding sequences. Using ELISA, we demonstrated that the recombinant protein specifically interacts with the anti-benzo[a]pyrene monoclonal antibody (mAB B2). Using molecular modeling, we predicted the 3-D structure of the mAB B2 active center and analyzed the characteristics of its interaction with different polycyclic aromatic hydrocarbons, as well as with the benzo[a]pyrene immunomimetic peptide. Thus, a comprehensive analysis of the results of the obtainment of hapten-specific components of anticarcinogenic vaccines allowed us to outline a strategy for future development in this direction. A.I. Gordeyev 2010 /pmc/articles/PMC3347585/ /pubmed/22649670 Text en Copyright © 2010 Park-media Ltd. http://creativecommons.org/licenses/by/2.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Glushkov, A.N.
Apalko, S.V.
Filipenko, M.L.
Matveeva, V.A.
Bakulina, A.Yu.
Lunin, V.G.
Kostyanko, M.V.
A Novel Approach to the Development of Anticarcinogenic Vaccines
title A Novel Approach to the Development of Anticarcinogenic Vaccines
title_full A Novel Approach to the Development of Anticarcinogenic Vaccines
title_fullStr A Novel Approach to the Development of Anticarcinogenic Vaccines
title_full_unstemmed A Novel Approach to the Development of Anticarcinogenic Vaccines
title_short A Novel Approach to the Development of Anticarcinogenic Vaccines
title_sort novel approach to the development of anticarcinogenic vaccines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347585/
https://www.ncbi.nlm.nih.gov/pubmed/22649670
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