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Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide

This study used polymeric micelles to improve quality by increasing drug solubility, extending mucosal drug retention time, enhancing mucoadhesiveness, and promoting drug permeation and deposition. Fluocinolone acetonide (FA) was loaded into polymeric micelles (FPM), which were composed of poloxamer...

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Autores principales: Limsitthichaikoon, Sucharat, Soontaranon, Siriwat, Hanpramukkun, Nuntachai, Thumanu, Kanjana, Priprem, Aroonsri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182893/
https://www.ncbi.nlm.nih.gov/pubmed/35683926
http://dx.doi.org/10.3390/polym14112247
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author Limsitthichaikoon, Sucharat
Soontaranon, Siriwat
Hanpramukkun, Nuntachai
Thumanu, Kanjana
Priprem, Aroonsri
author_facet Limsitthichaikoon, Sucharat
Soontaranon, Siriwat
Hanpramukkun, Nuntachai
Thumanu, Kanjana
Priprem, Aroonsri
author_sort Limsitthichaikoon, Sucharat
collection PubMed
description This study used polymeric micelles to improve quality by increasing drug solubility, extending mucosal drug retention time, enhancing mucoadhesiveness, and promoting drug permeation and deposition. Fluocinolone acetonide (FA) was loaded into polymeric micelles (FPM), which were composed of poloxamer 407 (P407), sodium polyacrylate (SPA), and polyethylene glycol 400, and their physicochemical properties were examined. Small-angle X-ray scattering (SAXS) revealed a hexagonal micellar structure at all temperatures, and the concentrations of P407 and SPA were shown to significantly affect the solubility, mucoadhesion, release, and permeation of FPMs. The proportion of P407 to PEG at a ratio of 7.5:15 with or without 0.1% w/v of SPA provided suitable FPM formulations. Moreover, the characteristics of FPMs revealed crystalline states inside the micelles, which was consistent with the morphology and nano-hexagonal structure. The results of ex vivo experiments using focal plane array (FPA)-based Fourier transform infrared (FTIR) imaging showed that the FPM with SPA penetrated quickly through the epithelium, lamina propria, and submucosa, and remained in all layers from 5–30 min following administration. In contrast, the FPM without SPA penetrated and passed through all layers. The FPM with extended mucoadhesion, improved drug–mucosal retention time, and increased FA permeation and deposition were successfully developed, and could be a promising innovation for increasing the efficiency of mouth rinses, as well as other topical pharmaceutical and dental applications.
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spelling pubmed-91828932022-06-10 Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide Limsitthichaikoon, Sucharat Soontaranon, Siriwat Hanpramukkun, Nuntachai Thumanu, Kanjana Priprem, Aroonsri Polymers (Basel) Article This study used polymeric micelles to improve quality by increasing drug solubility, extending mucosal drug retention time, enhancing mucoadhesiveness, and promoting drug permeation and deposition. Fluocinolone acetonide (FA) was loaded into polymeric micelles (FPM), which were composed of poloxamer 407 (P407), sodium polyacrylate (SPA), and polyethylene glycol 400, and their physicochemical properties were examined. Small-angle X-ray scattering (SAXS) revealed a hexagonal micellar structure at all temperatures, and the concentrations of P407 and SPA were shown to significantly affect the solubility, mucoadhesion, release, and permeation of FPMs. The proportion of P407 to PEG at a ratio of 7.5:15 with or without 0.1% w/v of SPA provided suitable FPM formulations. Moreover, the characteristics of FPMs revealed crystalline states inside the micelles, which was consistent with the morphology and nano-hexagonal structure. The results of ex vivo experiments using focal plane array (FPA)-based Fourier transform infrared (FTIR) imaging showed that the FPM with SPA penetrated quickly through the epithelium, lamina propria, and submucosa, and remained in all layers from 5–30 min following administration. In contrast, the FPM without SPA penetrated and passed through all layers. The FPM with extended mucoadhesion, improved drug–mucosal retention time, and increased FA permeation and deposition were successfully developed, and could be a promising innovation for increasing the efficiency of mouth rinses, as well as other topical pharmaceutical and dental applications. MDPI 2022-05-31 /pmc/articles/PMC9182893/ /pubmed/35683926 http://dx.doi.org/10.3390/polym14112247 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
Limsitthichaikoon, Sucharat
Soontaranon, Siriwat
Hanpramukkun, Nuntachai
Thumanu, Kanjana
Priprem, Aroonsri
Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide
title Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide
title_full Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide
title_fullStr Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide
title_full_unstemmed Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide
title_short Polymeric Micelles Enhance Mucosal Contact Time and Deposition of Fluocinolone Acetonide
title_sort polymeric micelles enhance mucosal contact time and deposition of fluocinolone acetonide
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182893/
https://www.ncbi.nlm.nih.gov/pubmed/35683926
http://dx.doi.org/10.3390/polym14112247
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