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Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors

Gold nanoparticles as part of vaccines greatly increase antigen stability, antigen accumulation in the lymph nodes, and antigen uptake by antigen-presenting cells. The use of such particles as part of anticancer vaccines based on heat shock proteins to increase vaccine effectiveness is timely. We pr...

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Autores principales: Dykman, Lev A., Staroverov, Sergey A., Kozlov, Sergey V., Fomin, Alexander S., Chumakov, Daniil S., Gabalov, Konstantin P., Kozlov, Yevgeny S., Soldatov, Dmitry A., Khlebtsov, Nikolai G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9693572/
https://www.ncbi.nlm.nih.gov/pubmed/36430792
http://dx.doi.org/10.3390/ijms232214313
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author Dykman, Lev A.
Staroverov, Sergey A.
Kozlov, Sergey V.
Fomin, Alexander S.
Chumakov, Daniil S.
Gabalov, Konstantin P.
Kozlov, Yevgeny S.
Soldatov, Dmitry A.
Khlebtsov, Nikolai G.
author_facet Dykman, Lev A.
Staroverov, Sergey A.
Kozlov, Sergey V.
Fomin, Alexander S.
Chumakov, Daniil S.
Gabalov, Konstantin P.
Kozlov, Yevgeny S.
Soldatov, Dmitry A.
Khlebtsov, Nikolai G.
author_sort Dykman, Lev A.
collection PubMed
description Gold nanoparticles as part of vaccines greatly increase antigen stability, antigen accumulation in the lymph nodes, and antigen uptake by antigen-presenting cells. The use of such particles as part of anticancer vaccines based on heat shock proteins to increase vaccine effectiveness is timely. We prepared and characterized nanoconjugates based on 15-nm gold nanoparticles and thermostable tumor antigens isolated from MH22a murine hepatoma cells. The whole-cell lysate of MH22a cells contained the main heat shock proteins. BALB/c mice were injected with the conjugates and then received transplants of MH22a cells. The highest titer was produced in mice immunized with the complex of gold nanoparticles + antigen with complete Freund’s adjuvant. The immunized mice showed no signs of tumor growth for 24 days. They also showed a decreased production of the INF-γ, IL-6, and IL-1 proinflammatory cytokines compared to the mice immunized through other schemes. This study is the first to show that it is possible in principle to use gold nanoparticles in combination with thermostable tumor antigens for antitumor vaccination. Antitumor vaccines based on thermostable tumor antigens can be largely improved by including gold nanoparticles as additional adjuvants.
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spelling pubmed-96935722022-11-26 Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors Dykman, Lev A. Staroverov, Sergey A. Kozlov, Sergey V. Fomin, Alexander S. Chumakov, Daniil S. Gabalov, Konstantin P. Kozlov, Yevgeny S. Soldatov, Dmitry A. Khlebtsov, Nikolai G. Int J Mol Sci Article Gold nanoparticles as part of vaccines greatly increase antigen stability, antigen accumulation in the lymph nodes, and antigen uptake by antigen-presenting cells. The use of such particles as part of anticancer vaccines based on heat shock proteins to increase vaccine effectiveness is timely. We prepared and characterized nanoconjugates based on 15-nm gold nanoparticles and thermostable tumor antigens isolated from MH22a murine hepatoma cells. The whole-cell lysate of MH22a cells contained the main heat shock proteins. BALB/c mice were injected with the conjugates and then received transplants of MH22a cells. The highest titer was produced in mice immunized with the complex of gold nanoparticles + antigen with complete Freund’s adjuvant. The immunized mice showed no signs of tumor growth for 24 days. They also showed a decreased production of the INF-γ, IL-6, and IL-1 proinflammatory cytokines compared to the mice immunized through other schemes. This study is the first to show that it is possible in principle to use gold nanoparticles in combination with thermostable tumor antigens for antitumor vaccination. Antitumor vaccines based on thermostable tumor antigens can be largely improved by including gold nanoparticles as additional adjuvants. MDPI 2022-11-18 /pmc/articles/PMC9693572/ /pubmed/36430792 http://dx.doi.org/10.3390/ijms232214313 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dykman, Lev A.
Staroverov, Sergey A.
Kozlov, Sergey V.
Fomin, Alexander S.
Chumakov, Daniil S.
Gabalov, Konstantin P.
Kozlov, Yevgeny S.
Soldatov, Dmitry A.
Khlebtsov, Nikolai G.
Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors
title Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors
title_full Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors
title_fullStr Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors
title_full_unstemmed Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors
title_short Immunization of Mice with Gold Nanoparticles Conjugated to Thermostable Cancer Antigens Prevents the Development of Xenografted Tumors
title_sort immunization of mice with gold nanoparticles conjugated to thermostable cancer antigens prevents the development of xenografted tumors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9693572/
https://www.ncbi.nlm.nih.gov/pubmed/36430792
http://dx.doi.org/10.3390/ijms232214313
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