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The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability

Vitamin D3, known to regulate bone homeostasis, has recently been shown to have many pleiotropic effects in different tissues and organs due to the presence of its receptor in a wide range of cells. Our previous study demonstrated that vitamin D3 was able to increase the wound healing respect to the...

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Autores principales: Cataldi, Samuela, Ceccarini, Maria Rachele, Patria, Federica, Beccari, Tommaso, Mandarano, Martina, Ferri, Ivana, Lazzarini, Andrea, Curcio, Francesco, Albi, Elisabetta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8835820/
https://www.ncbi.nlm.nih.gov/pubmed/35163332
http://dx.doi.org/10.3390/ijms23031410
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author Cataldi, Samuela
Ceccarini, Maria Rachele
Patria, Federica
Beccari, Tommaso
Mandarano, Martina
Ferri, Ivana
Lazzarini, Andrea
Curcio, Francesco
Albi, Elisabetta
author_facet Cataldi, Samuela
Ceccarini, Maria Rachele
Patria, Federica
Beccari, Tommaso
Mandarano, Martina
Ferri, Ivana
Lazzarini, Andrea
Curcio, Francesco
Albi, Elisabetta
author_sort Cataldi, Samuela
collection PubMed
description Vitamin D3, known to regulate bone homeostasis, has recently been shown to have many pleiotropic effects in different tissues and organs due to the presence of its receptor in a wide range of cells. Our previous study demonstrated that vitamin D3 was able to increase the wound healing respect to the control sample, 24 h after cutting, without however leading to a complete repair. The aim of the study was to combine vitamin D3 with silver nanoparticles to possibly enable a faster reparative effect. The results showed that this association was capable of inducing a complete wound healing only after 18 h. Moreover, a treatment of vitamin D3 + silver nanoparticles yielded a small percentage of keratinocytes vimentin-positive, suggesting the possibility that the treatment was responsible for epithelial to mesenchymal transition of the cells, facilitating wound healing repair. Since vitamin D3 acts via sphingolipid metabolism, we studied the expression of gene encoding for the metabolic enzymes and protein level. We found an increase in neutral sphingomyelinase without involvement of neutral ceramidase or sphingosine kinase2. In support, an increase in ceramide level was identified by Ultrafast Liquid Chromatography–Tandem Mass Spectrometry, suggesting a possible involvement of ceramides in wound healing process.
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spelling pubmed-88358202022-02-12 The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability Cataldi, Samuela Ceccarini, Maria Rachele Patria, Federica Beccari, Tommaso Mandarano, Martina Ferri, Ivana Lazzarini, Andrea Curcio, Francesco Albi, Elisabetta Int J Mol Sci Article Vitamin D3, known to regulate bone homeostasis, has recently been shown to have many pleiotropic effects in different tissues and organs due to the presence of its receptor in a wide range of cells. Our previous study demonstrated that vitamin D3 was able to increase the wound healing respect to the control sample, 24 h after cutting, without however leading to a complete repair. The aim of the study was to combine vitamin D3 with silver nanoparticles to possibly enable a faster reparative effect. The results showed that this association was capable of inducing a complete wound healing only after 18 h. Moreover, a treatment of vitamin D3 + silver nanoparticles yielded a small percentage of keratinocytes vimentin-positive, suggesting the possibility that the treatment was responsible for epithelial to mesenchymal transition of the cells, facilitating wound healing repair. Since vitamin D3 acts via sphingolipid metabolism, we studied the expression of gene encoding for the metabolic enzymes and protein level. We found an increase in neutral sphingomyelinase without involvement of neutral ceramidase or sphingosine kinase2. In support, an increase in ceramide level was identified by Ultrafast Liquid Chromatography–Tandem Mass Spectrometry, suggesting a possible involvement of ceramides in wound healing process. MDPI 2022-01-26 /pmc/articles/PMC8835820/ /pubmed/35163332 http://dx.doi.org/10.3390/ijms23031410 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
Cataldi, Samuela
Ceccarini, Maria Rachele
Patria, Federica
Beccari, Tommaso
Mandarano, Martina
Ferri, Ivana
Lazzarini, Andrea
Curcio, Francesco
Albi, Elisabetta
The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability
title The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability
title_full The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability
title_fullStr The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability
title_full_unstemmed The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability
title_short The Effect of Vitamin D3 and Silver Nanoparticles on HaCaT Cell Viability
title_sort effect of vitamin d3 and silver nanoparticles on hacat cell viability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8835820/
https://www.ncbi.nlm.nih.gov/pubmed/35163332
http://dx.doi.org/10.3390/ijms23031410
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