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Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models

During the last 3 decades, there has been a slow advance to obtain new treatments for malignant melanoma that improve patient survival. In this work, we present a systematic study focused on the antiproliferative and antitumour effect of AgNPs. These nanoparticles are fully characterized, are coated...

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Autores principales: Valenzuela-Salas, Lucía M., Girón-Vázquez, Nayeli G., García-Ramos, Juan C., Torres-Bugarín, Olivia, Gómez, Claudia, Pestryakov, Alexey, Villarreal-Gómez, Luis J., Toledano-Magaña, Yanis, Bogdanchikova, Nina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6683800/
https://www.ncbi.nlm.nih.gov/pubmed/31428226
http://dx.doi.org/10.1155/2019/4528241
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author Valenzuela-Salas, Lucía M.
Girón-Vázquez, Nayeli G.
García-Ramos, Juan C.
Torres-Bugarín, Olivia
Gómez, Claudia
Pestryakov, Alexey
Villarreal-Gómez, Luis J.
Toledano-Magaña, Yanis
Bogdanchikova, Nina
author_facet Valenzuela-Salas, Lucía M.
Girón-Vázquez, Nayeli G.
García-Ramos, Juan C.
Torres-Bugarín, Olivia
Gómez, Claudia
Pestryakov, Alexey
Villarreal-Gómez, Luis J.
Toledano-Magaña, Yanis
Bogdanchikova, Nina
author_sort Valenzuela-Salas, Lucía M.
collection PubMed
description During the last 3 decades, there has been a slow advance to obtain new treatments for malignant melanoma that improve patient survival. In this work, we present a systematic study focused on the antiproliferative and antitumour effect of AgNPs. These nanoparticles are fully characterized, are coated with polyvinylpyrrolidone (PVP), and have an average size of 35 ± 15 nm and a metallic silver content of 1.2% wt. Main changes on cell viability, induction of apoptosis and necrosis, and ROS generation were found on B16-F10 cells after six hours of exposure to AgNPs (IC(50) = 4.2 μg/mL) or Cisplatin (IC(50) = 2.0 μg/mL). Despite the similar response for both AgNPs and Cisplatin on antiproliferative potency (cellular viability of 53.95 ± 1.88 and 53.62 ± 1.04) and ROS production (20.27 ± 1.09% and 19.50 ± 0.35%), significantly different cell death pathways were triggered. While AgNPs induce only apoptosis (45.98 ± 1.88%), Cisplatin induces apoptosis and necrosis at the same rate (22.31 ± 1.72% and 24.07 ± 1.10%, respectively). In addition to their antiproliferative activity, in vivo experiments showed that treatments of 3, 6, and 12 mg/kg of AgNPs elicit a survival rate almost 4 times higher (P < 0.05) compared with the survival rate obtained with Cisplatin (2 mg/kg). Furthermore, the survivor mice treated with AgNPs do not show genotoxic damage determined by micronuclei frequency quantification on peripheral blood cells. These results exhibit the remarkable antitumour activity of a nongenotoxic AgNP formulation and constitute the first advance toward the application of these AgNPs for melanoma treatment, which could considerably reduce adverse effects provoked by currently applied chemotherapeutics.
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spelling pubmed-66838002019-08-19 Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models Valenzuela-Salas, Lucía M. Girón-Vázquez, Nayeli G. García-Ramos, Juan C. Torres-Bugarín, Olivia Gómez, Claudia Pestryakov, Alexey Villarreal-Gómez, Luis J. Toledano-Magaña, Yanis Bogdanchikova, Nina Oxid Med Cell Longev Research Article During the last 3 decades, there has been a slow advance to obtain new treatments for malignant melanoma that improve patient survival. In this work, we present a systematic study focused on the antiproliferative and antitumour effect of AgNPs. These nanoparticles are fully characterized, are coated with polyvinylpyrrolidone (PVP), and have an average size of 35 ± 15 nm and a metallic silver content of 1.2% wt. Main changes on cell viability, induction of apoptosis and necrosis, and ROS generation were found on B16-F10 cells after six hours of exposure to AgNPs (IC(50) = 4.2 μg/mL) or Cisplatin (IC(50) = 2.0 μg/mL). Despite the similar response for both AgNPs and Cisplatin on antiproliferative potency (cellular viability of 53.95 ± 1.88 and 53.62 ± 1.04) and ROS production (20.27 ± 1.09% and 19.50 ± 0.35%), significantly different cell death pathways were triggered. While AgNPs induce only apoptosis (45.98 ± 1.88%), Cisplatin induces apoptosis and necrosis at the same rate (22.31 ± 1.72% and 24.07 ± 1.10%, respectively). In addition to their antiproliferative activity, in vivo experiments showed that treatments of 3, 6, and 12 mg/kg of AgNPs elicit a survival rate almost 4 times higher (P < 0.05) compared with the survival rate obtained with Cisplatin (2 mg/kg). Furthermore, the survivor mice treated with AgNPs do not show genotoxic damage determined by micronuclei frequency quantification on peripheral blood cells. These results exhibit the remarkable antitumour activity of a nongenotoxic AgNP formulation and constitute the first advance toward the application of these AgNPs for melanoma treatment, which could considerably reduce adverse effects provoked by currently applied chemotherapeutics. Hindawi 2019-07-25 /pmc/articles/PMC6683800/ /pubmed/31428226 http://dx.doi.org/10.1155/2019/4528241 Text en Copyright © 2019 Lucía M. Valenzuela-Salas et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under 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
Valenzuela-Salas, Lucía M.
Girón-Vázquez, Nayeli G.
García-Ramos, Juan C.
Torres-Bugarín, Olivia
Gómez, Claudia
Pestryakov, Alexey
Villarreal-Gómez, Luis J.
Toledano-Magaña, Yanis
Bogdanchikova, Nina
Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models
title Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models
title_full Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models
title_fullStr Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models
title_full_unstemmed Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models
title_short Antiproliferative and Antitumour Effect of Nongenotoxic Silver Nanoparticles on Melanoma Models
title_sort antiproliferative and antitumour effect of nongenotoxic silver nanoparticles on melanoma models
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6683800/
https://www.ncbi.nlm.nih.gov/pubmed/31428226
http://dx.doi.org/10.1155/2019/4528241
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