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Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence

Tissue homeostasis mainly depends on the activity of stem cells to replace damaged elements and restore tissue functions. Within this context, mesenchymal stem cells and fibroblasts are essential for maintaining tissue homeostasis in skin, in particular in the dermis. Modifications in collagen fiber...

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Autores principales: Bellu, Emanuela, Cruciani, Sara, Garroni, Giuseppe, Balzano, Francesca, Satta, Rosanna, Montesu, Maria Antonia, Fadda, Angela, Mulas, Maurizio, Sarais, Giorgia, Bandiera, Pasquale, Ventura, Carlo, Kralovič, Martin, Sabo, Jan, Amler, Evzen, Maioli, Margherita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8227046/
https://www.ncbi.nlm.nih.gov/pubmed/34200247
http://dx.doi.org/10.3390/cells10061415
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author Bellu, Emanuela
Cruciani, Sara
Garroni, Giuseppe
Balzano, Francesca
Satta, Rosanna
Montesu, Maria Antonia
Fadda, Angela
Mulas, Maurizio
Sarais, Giorgia
Bandiera, Pasquale
Ventura, Carlo
Kralovič, Martin
Sabo, Jan
Amler, Evzen
Maioli, Margherita
author_facet Bellu, Emanuela
Cruciani, Sara
Garroni, Giuseppe
Balzano, Francesca
Satta, Rosanna
Montesu, Maria Antonia
Fadda, Angela
Mulas, Maurizio
Sarais, Giorgia
Bandiera, Pasquale
Ventura, Carlo
Kralovič, Martin
Sabo, Jan
Amler, Evzen
Maioli, Margherita
author_sort Bellu, Emanuela
collection PubMed
description Tissue homeostasis mainly depends on the activity of stem cells to replace damaged elements and restore tissue functions. Within this context, mesenchymal stem cells and fibroblasts are essential for maintaining tissue homeostasis in skin, in particular in the dermis. Modifications in collagen fibers are able to affect stem cell features. Skin properties can be significantly reduced after injuries or with aging, and stem cell niches, mainly comprising extracellular matrix (ECM), may be compromised. To this end, specific molecules can be administrated to prevent the aging process induced by UV exposure in the attempt to maintain a youngness phenotype. NanoPCL-M is a novel nanodevice able to control delivery of Mediterranean plant myrtle (Myrtus communis L.) extracts. In particular, we previously described that myrtle extracts, rich in bioactive molecules and nutraceuticals, were able to counteract senescence in adipose derived stem cells. In this study, we analyzed the effect of NanoPCL-M on skin stem cells (SSCs) and dermal fibroblasts in a dynamic cell culture model in order to prevent the effects of UV-induced senescence on proliferation and collagen depot. The BrdU assay results highlight the significantly positive effect of NanoPCL-M on the proliferation of both fibroblasts and SSCs. Our results demonstrate that-M is able to preserve SSCs features and collagen depot after UV-induced senescence, suggesting their capability to retain a young phenotype.
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spelling pubmed-82270462021-06-26 Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence Bellu, Emanuela Cruciani, Sara Garroni, Giuseppe Balzano, Francesca Satta, Rosanna Montesu, Maria Antonia Fadda, Angela Mulas, Maurizio Sarais, Giorgia Bandiera, Pasquale Ventura, Carlo Kralovič, Martin Sabo, Jan Amler, Evzen Maioli, Margherita Cells Article Tissue homeostasis mainly depends on the activity of stem cells to replace damaged elements and restore tissue functions. Within this context, mesenchymal stem cells and fibroblasts are essential for maintaining tissue homeostasis in skin, in particular in the dermis. Modifications in collagen fibers are able to affect stem cell features. Skin properties can be significantly reduced after injuries or with aging, and stem cell niches, mainly comprising extracellular matrix (ECM), may be compromised. To this end, specific molecules can be administrated to prevent the aging process induced by UV exposure in the attempt to maintain a youngness phenotype. NanoPCL-M is a novel nanodevice able to control delivery of Mediterranean plant myrtle (Myrtus communis L.) extracts. In particular, we previously described that myrtle extracts, rich in bioactive molecules and nutraceuticals, were able to counteract senescence in adipose derived stem cells. In this study, we analyzed the effect of NanoPCL-M on skin stem cells (SSCs) and dermal fibroblasts in a dynamic cell culture model in order to prevent the effects of UV-induced senescence on proliferation and collagen depot. The BrdU assay results highlight the significantly positive effect of NanoPCL-M on the proliferation of both fibroblasts and SSCs. Our results demonstrate that-M is able to preserve SSCs features and collagen depot after UV-induced senescence, suggesting their capability to retain a young phenotype. MDPI 2021-06-07 /pmc/articles/PMC8227046/ /pubmed/34200247 http://dx.doi.org/10.3390/cells10061415 Text en © 2021 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
Bellu, Emanuela
Cruciani, Sara
Garroni, Giuseppe
Balzano, Francesca
Satta, Rosanna
Montesu, Maria Antonia
Fadda, Angela
Mulas, Maurizio
Sarais, Giorgia
Bandiera, Pasquale
Ventura, Carlo
Kralovič, Martin
Sabo, Jan
Amler, Evzen
Maioli, Margherita
Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence
title Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence
title_full Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence
title_fullStr Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence
title_full_unstemmed Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence
title_short Natural Compounds and PCL Nanofibers: A Novel Tool to Counteract Stem Cell Senescence
title_sort natural compounds and pcl nanofibers: a novel tool to counteract stem cell senescence
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8227046/
https://www.ncbi.nlm.nih.gov/pubmed/34200247
http://dx.doi.org/10.3390/cells10061415
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