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Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds

Chitosan oleate was previously proposed to encapsulate in nanocarriers some poorly soluble molecules aimed to wound therapy, such as the anti-infective silver sulfadiazine, and the antioxidant α tocopherol. Because nanocarriers need a suitable formulation to be administered to wounds, in the present...

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Autores principales: Bonferoni, Maria Cristina, Sandri, Giuseppina, Rossi, Silvia, Dellera, Eleonora, Invernizzi, Alessandro, Boselli, Cinzia, Cornaglia, Antonia Icaro, Del Fante, Claudia, Perotti, Cesare, Vigani, Barbara, Riva, Federica, Caramella, Carla, Ferrari, Franca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5852484/
https://www.ncbi.nlm.nih.gov/pubmed/29425164
http://dx.doi.org/10.3390/md16020056
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author Bonferoni, Maria Cristina
Sandri, Giuseppina
Rossi, Silvia
Dellera, Eleonora
Invernizzi, Alessandro
Boselli, Cinzia
Cornaglia, Antonia Icaro
Del Fante, Claudia
Perotti, Cesare
Vigani, Barbara
Riva, Federica
Caramella, Carla
Ferrari, Franca
author_facet Bonferoni, Maria Cristina
Sandri, Giuseppina
Rossi, Silvia
Dellera, Eleonora
Invernizzi, Alessandro
Boselli, Cinzia
Cornaglia, Antonia Icaro
Del Fante, Claudia
Perotti, Cesare
Vigani, Barbara
Riva, Federica
Caramella, Carla
Ferrari, Franca
author_sort Bonferoni, Maria Cristina
collection PubMed
description Chitosan oleate was previously proposed to encapsulate in nanocarriers some poorly soluble molecules aimed to wound therapy, such as the anti-infective silver sulfadiazine, and the antioxidant α tocopherol. Because nanocarriers need a suitable formulation to be administered to wounds, in the present paper, these previously developed nanocarriers were loaded into freeze dried dressings based on chitosan glutamate. These were proposed as bioactive dressings aimed to support the application to wounds of platelet lysate, a hemoderivative rich in growth factors. The dressings were characterized for hydration capacity, morphological aspect, and rheological and mechanical behavior. Although chitosan oleate nanocarriers clearly decreased the mechanical properties of dressings, these remained compatible with handling and application to wounds. Preliminary studies in vitro on fibroblast cell cultures demonstrated good compatibility of platelet lysate with nanocarriers and bioactive dressings. An in vivo study on a murine wound model showed an accelerating wound healing effect for the bioactive dressing and its suitability as support of the platelet lysate application to wounds.
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spelling pubmed-58524842018-03-19 Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds Bonferoni, Maria Cristina Sandri, Giuseppina Rossi, Silvia Dellera, Eleonora Invernizzi, Alessandro Boselli, Cinzia Cornaglia, Antonia Icaro Del Fante, Claudia Perotti, Cesare Vigani, Barbara Riva, Federica Caramella, Carla Ferrari, Franca Mar Drugs Article Chitosan oleate was previously proposed to encapsulate in nanocarriers some poorly soluble molecules aimed to wound therapy, such as the anti-infective silver sulfadiazine, and the antioxidant α tocopherol. Because nanocarriers need a suitable formulation to be administered to wounds, in the present paper, these previously developed nanocarriers were loaded into freeze dried dressings based on chitosan glutamate. These were proposed as bioactive dressings aimed to support the application to wounds of platelet lysate, a hemoderivative rich in growth factors. The dressings were characterized for hydration capacity, morphological aspect, and rheological and mechanical behavior. Although chitosan oleate nanocarriers clearly decreased the mechanical properties of dressings, these remained compatible with handling and application to wounds. Preliminary studies in vitro on fibroblast cell cultures demonstrated good compatibility of platelet lysate with nanocarriers and bioactive dressings. An in vivo study on a murine wound model showed an accelerating wound healing effect for the bioactive dressing and its suitability as support of the platelet lysate application to wounds. MDPI 2018-02-09 /pmc/articles/PMC5852484/ /pubmed/29425164 http://dx.doi.org/10.3390/md16020056 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bonferoni, Maria Cristina
Sandri, Giuseppina
Rossi, Silvia
Dellera, Eleonora
Invernizzi, Alessandro
Boselli, Cinzia
Cornaglia, Antonia Icaro
Del Fante, Claudia
Perotti, Cesare
Vigani, Barbara
Riva, Federica
Caramella, Carla
Ferrari, Franca
Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds
title Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds
title_full Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds
title_fullStr Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds
title_full_unstemmed Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds
title_short Association of Alpha Tocopherol and Ag Sulfadiazine Chitosan Oleate Nanocarriers in Bioactive Dressings Supporting Platelet Lysate Application to Skin Wounds
title_sort association of alpha tocopherol and ag sulfadiazine chitosan oleate nanocarriers in bioactive dressings supporting platelet lysate application to skin wounds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5852484/
https://www.ncbi.nlm.nih.gov/pubmed/29425164
http://dx.doi.org/10.3390/md16020056
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