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Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications

Two formulations based on diclofenac sodium salt encapsulated into a chitosan hydrogel were designed and prepared, and their drug release was investigated by combining in vitro results with mathematical modeling. To understand how the pattern of drug encapsulation impacted its release, the formulati...

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Autores principales: Himiniuc, Loredana Maria, Socolov, Razvan, Nica, Irina, Agop, Maricel, Volovat, Constantin, Ochiuz, Lacramioara, Vasincu, Decebal, Rotundu, Ana Maria, Rosu, Iulian Alin, Ghizdovat, Vlad, Volovat, Simona Ruxandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218168/
https://www.ncbi.nlm.nih.gov/pubmed/37233013
http://dx.doi.org/10.3390/gels9050422
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author Himiniuc, Loredana Maria
Socolov, Razvan
Nica, Irina
Agop, Maricel
Volovat, Constantin
Ochiuz, Lacramioara
Vasincu, Decebal
Rotundu, Ana Maria
Rosu, Iulian Alin
Ghizdovat, Vlad
Volovat, Simona Ruxandra
author_facet Himiniuc, Loredana Maria
Socolov, Razvan
Nica, Irina
Agop, Maricel
Volovat, Constantin
Ochiuz, Lacramioara
Vasincu, Decebal
Rotundu, Ana Maria
Rosu, Iulian Alin
Ghizdovat, Vlad
Volovat, Simona Ruxandra
author_sort Himiniuc, Loredana Maria
collection PubMed
description Two formulations based on diclofenac sodium salt encapsulated into a chitosan hydrogel were designed and prepared, and their drug release was investigated by combining in vitro results with mathematical modeling. To understand how the pattern of drug encapsulation impacted its release, the formulations were supramolecularly and morphologically characterized by scanning electron microscopy and polarized light microscopy, respectively. The mechanism of diclofenac release was assessed by using a mathematical model based on the multifractal theory of motion. Various drug-delivery mechanisms, such as Fickian- and non-Fickian-type diffusion, were shown to be fundamental mechanisms. More precisely, in a case of multifractal one-dimensional drug diffusion in a controlled-release polymer–drug system (i.e., in the form of a plane with a certain thickness), a solution that allowed the model’s validation through the obtained experimental data was established. The present research reveals possible new perspectives, for example in the prevention of intrauterine adhesions occurring through endometrial inflammation and other pathologies with an inflammatory mechanism background, such as periodontal diseases, and also therapeutic potential beyond the anti-inflammatory action of diclofenac as an anticancer agent, with a role in cell cycle regulation and apoptosis, using this type of drug-delivery system.
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spelling pubmed-102181682023-05-27 Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications Himiniuc, Loredana Maria Socolov, Razvan Nica, Irina Agop, Maricel Volovat, Constantin Ochiuz, Lacramioara Vasincu, Decebal Rotundu, Ana Maria Rosu, Iulian Alin Ghizdovat, Vlad Volovat, Simona Ruxandra Gels Article Two formulations based on diclofenac sodium salt encapsulated into a chitosan hydrogel were designed and prepared, and their drug release was investigated by combining in vitro results with mathematical modeling. To understand how the pattern of drug encapsulation impacted its release, the formulations were supramolecularly and morphologically characterized by scanning electron microscopy and polarized light microscopy, respectively. The mechanism of diclofenac release was assessed by using a mathematical model based on the multifractal theory of motion. Various drug-delivery mechanisms, such as Fickian- and non-Fickian-type diffusion, were shown to be fundamental mechanisms. More precisely, in a case of multifractal one-dimensional drug diffusion in a controlled-release polymer–drug system (i.e., in the form of a plane with a certain thickness), a solution that allowed the model’s validation through the obtained experimental data was established. The present research reveals possible new perspectives, for example in the prevention of intrauterine adhesions occurring through endometrial inflammation and other pathologies with an inflammatory mechanism background, such as periodontal diseases, and also therapeutic potential beyond the anti-inflammatory action of diclofenac as an anticancer agent, with a role in cell cycle regulation and apoptosis, using this type of drug-delivery system. MDPI 2023-05-17 /pmc/articles/PMC10218168/ /pubmed/37233013 http://dx.doi.org/10.3390/gels9050422 Text en © 2023 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
Himiniuc, Loredana Maria
Socolov, Razvan
Nica, Irina
Agop, Maricel
Volovat, Constantin
Ochiuz, Lacramioara
Vasincu, Decebal
Rotundu, Ana Maria
Rosu, Iulian Alin
Ghizdovat, Vlad
Volovat, Simona Ruxandra
Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications
title Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications
title_full Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications
title_fullStr Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications
title_full_unstemmed Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications
title_short Theoretical and Experimental Aspects of Sodium Diclofenac Salt Release from Chitosan-Based Hydrogels and Possible Applications
title_sort theoretical and experimental aspects of sodium diclofenac salt release from chitosan-based hydrogels and possible applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218168/
https://www.ncbi.nlm.nih.gov/pubmed/37233013
http://dx.doi.org/10.3390/gels9050422
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