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Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo

In our recent study, we showed that in vitro treatment of melanoma cells with hyperpolarized light (HPL) as well as with the second derivative of fullerene, hyper-harmonized hydroxylated fullerene water complex (3HFWC) reduced viability of cells by decreasing their proliferative capacity and inducin...

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Autores principales: Markelić, Milica, Mojić, Marija, Bovan, Dijana, Jelača, Sanja, Jović, Zorana, Purić, Milica, Koruga, Djuro, Mijatović, Sanja, Maksimović-Ivanić, Danijela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9918970/
https://www.ncbi.nlm.nih.gov/pubmed/36770334
http://dx.doi.org/10.3390/nano13030372
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author Markelić, Milica
Mojić, Marija
Bovan, Dijana
Jelača, Sanja
Jović, Zorana
Purić, Milica
Koruga, Djuro
Mijatović, Sanja
Maksimović-Ivanić, Danijela
author_facet Markelić, Milica
Mojić, Marija
Bovan, Dijana
Jelača, Sanja
Jović, Zorana
Purić, Milica
Koruga, Djuro
Mijatović, Sanja
Maksimović-Ivanić, Danijela
author_sort Markelić, Milica
collection PubMed
description In our recent study, we showed that in vitro treatment of melanoma cells with hyperpolarized light (HPL) as well as with the second derivative of fullerene, hyper-harmonized hydroxylated fullerene water complex (3HFWC) reduced viability of cells by decreasing their proliferative capacity and inducing senescence and reprogramming towards a normal, melanocytic phenotype. Therefore, we wanted to determine whether these effects persisted in vivo in the syngeneic mouse melanoma model with a combined treatment of HPL irradiation and 3HFWC per os. Our results demonstrated the potent antitumor effects of 3HFWC nanosubstance assisted by HPL irradiation. These effects were primarily driven by the stimulation of melanoma cell growth arrest, the establishment of a senescent phenotype, and melanocytic differentiation on the one hand, and the awakening of the antitumor immune response on the other. In addition, the combined treatment reduced the protumorigenic activity of immune cells by depleting T regulatory cells, myeloid-derived suppressors, and M2 macrophages. The support of the 3HFWC substance by HPL irradiation may be the axis of the new approach design based on tumor cell reprogramming synchronized with the mobilization of the host’s protective immune response.
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spelling pubmed-99189702023-02-12 Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo Markelić, Milica Mojić, Marija Bovan, Dijana Jelača, Sanja Jović, Zorana Purić, Milica Koruga, Djuro Mijatović, Sanja Maksimović-Ivanić, Danijela Nanomaterials (Basel) Article In our recent study, we showed that in vitro treatment of melanoma cells with hyperpolarized light (HPL) as well as with the second derivative of fullerene, hyper-harmonized hydroxylated fullerene water complex (3HFWC) reduced viability of cells by decreasing their proliferative capacity and inducing senescence and reprogramming towards a normal, melanocytic phenotype. Therefore, we wanted to determine whether these effects persisted in vivo in the syngeneic mouse melanoma model with a combined treatment of HPL irradiation and 3HFWC per os. Our results demonstrated the potent antitumor effects of 3HFWC nanosubstance assisted by HPL irradiation. These effects were primarily driven by the stimulation of melanoma cell growth arrest, the establishment of a senescent phenotype, and melanocytic differentiation on the one hand, and the awakening of the antitumor immune response on the other. In addition, the combined treatment reduced the protumorigenic activity of immune cells by depleting T regulatory cells, myeloid-derived suppressors, and M2 macrophages. The support of the 3HFWC substance by HPL irradiation may be the axis of the new approach design based on tumor cell reprogramming synchronized with the mobilization of the host’s protective immune response. MDPI 2023-01-17 /pmc/articles/PMC9918970/ /pubmed/36770334 http://dx.doi.org/10.3390/nano13030372 Text en © 2023 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
Markelić, Milica
Mojić, Marija
Bovan, Dijana
Jelača, Sanja
Jović, Zorana
Purić, Milica
Koruga, Djuro
Mijatović, Sanja
Maksimović-Ivanić, Danijela
Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo
title Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo
title_full Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo
title_fullStr Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo
title_full_unstemmed Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo
title_short Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application In Vivo
title_sort melanoma cell reprogramming and awakening of antitumor immunity as a fingerprint of hyper-harmonized hydroxylated fullerene water complex (3hfwc) and hyperpolarized light application in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9918970/
https://www.ncbi.nlm.nih.gov/pubmed/36770334
http://dx.doi.org/10.3390/nano13030372
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