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Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline

One major warning emerging during the first worldwide combat against healthcare-associated infections concerns the key role of the surface in the storage and transfer of the virus. Our study is based on the laser coating of surfaces with an inorganic/organic composite mixture of amorphous calcium ph...

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Autores principales: Visan, Anita Ioana, Ristoscu, Carmen, Popescu-Pelin, Gianina, Sopronyi, Mihai, Matei, Consuela Elena, Socol, Gabriel, Chifiriuc, Mariana Carmen, Bleotu, Coralia, Grossin, David, Brouillet, Fabien, Grill, Sylvain Le, Bertrand, Ghislaine, Zgura, Irina, Cristescu, Rodica, Mihailescu, Ion N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8537227/
https://www.ncbi.nlm.nih.gov/pubmed/34683952
http://dx.doi.org/10.3390/pharmaceutics13101659
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author Visan, Anita Ioana
Ristoscu, Carmen
Popescu-Pelin, Gianina
Sopronyi, Mihai
Matei, Consuela Elena
Socol, Gabriel
Chifiriuc, Mariana Carmen
Bleotu, Coralia
Grossin, David
Brouillet, Fabien
Grill, Sylvain Le
Bertrand, Ghislaine
Zgura, Irina
Cristescu, Rodica
Mihailescu, Ion N.
author_facet Visan, Anita Ioana
Ristoscu, Carmen
Popescu-Pelin, Gianina
Sopronyi, Mihai
Matei, Consuela Elena
Socol, Gabriel
Chifiriuc, Mariana Carmen
Bleotu, Coralia
Grossin, David
Brouillet, Fabien
Grill, Sylvain Le
Bertrand, Ghislaine
Zgura, Irina
Cristescu, Rodica
Mihailescu, Ion N.
author_sort Visan, Anita Ioana
collection PubMed
description One major warning emerging during the first worldwide combat against healthcare-associated infections concerns the key role of the surface in the storage and transfer of the virus. Our study is based on the laser coating of surfaces with an inorganic/organic composite mixture of amorphous calcium phosphate–chitosan–tetracycline that is able to fight against infectious agents, but also capable of preserving its activity for a prolonged time, up to several days. The extended release in simulated fluids of the composite mixture containing the drug (tetracycline) was demonstrated by mass loss and UV–VIS investigations. The drug release profile from our composite coatings proceeds via two stages: an initial burst release (during the first hours), followed by a slower evolution active for the next 72 h, and probably more. Optimized coatings strongly inhibit the growth of tested bacteria (Enterococcus faecalis and Escherichia coli), while the drug incorporation has no impact on the in vitro composite’s cytotoxicity, the coatings proving an excellent biocompatibility sustaining the normal development of MG63 bone-like cells. One may, therefore, consider that the proposed coatings’ composition can open the prospective of a new generation of antimicrobial coatings for implants, but also for nosocomial and other large area contamination prevention.
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spelling pubmed-85372272021-10-24 Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline Visan, Anita Ioana Ristoscu, Carmen Popescu-Pelin, Gianina Sopronyi, Mihai Matei, Consuela Elena Socol, Gabriel Chifiriuc, Mariana Carmen Bleotu, Coralia Grossin, David Brouillet, Fabien Grill, Sylvain Le Bertrand, Ghislaine Zgura, Irina Cristescu, Rodica Mihailescu, Ion N. Pharmaceutics Article One major warning emerging during the first worldwide combat against healthcare-associated infections concerns the key role of the surface in the storage and transfer of the virus. Our study is based on the laser coating of surfaces with an inorganic/organic composite mixture of amorphous calcium phosphate–chitosan–tetracycline that is able to fight against infectious agents, but also capable of preserving its activity for a prolonged time, up to several days. The extended release in simulated fluids of the composite mixture containing the drug (tetracycline) was demonstrated by mass loss and UV–VIS investigations. The drug release profile from our composite coatings proceeds via two stages: an initial burst release (during the first hours), followed by a slower evolution active for the next 72 h, and probably more. Optimized coatings strongly inhibit the growth of tested bacteria (Enterococcus faecalis and Escherichia coli), while the drug incorporation has no impact on the in vitro composite’s cytotoxicity, the coatings proving an excellent biocompatibility sustaining the normal development of MG63 bone-like cells. One may, therefore, consider that the proposed coatings’ composition can open the prospective of a new generation of antimicrobial coatings for implants, but also for nosocomial and other large area contamination prevention. MDPI 2021-10-11 /pmc/articles/PMC8537227/ /pubmed/34683952 http://dx.doi.org/10.3390/pharmaceutics13101659 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
Visan, Anita Ioana
Ristoscu, Carmen
Popescu-Pelin, Gianina
Sopronyi, Mihai
Matei, Consuela Elena
Socol, Gabriel
Chifiriuc, Mariana Carmen
Bleotu, Coralia
Grossin, David
Brouillet, Fabien
Grill, Sylvain Le
Bertrand, Ghislaine
Zgura, Irina
Cristescu, Rodica
Mihailescu, Ion N.
Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline
title Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline
title_full Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline
title_fullStr Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline
title_full_unstemmed Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline
title_short Composite Drug Delivery System Based on Amorphous Calcium Phosphate–Chitosan: An Efficient Antimicrobial Platform for Extended Release of Tetracycline
title_sort composite drug delivery system based on amorphous calcium phosphate–chitosan: an efficient antimicrobial platform for extended release of tetracycline
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8537227/
https://www.ncbi.nlm.nih.gov/pubmed/34683952
http://dx.doi.org/10.3390/pharmaceutics13101659
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