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The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods

Orodispersible films (ODFs) address the needs of pediatric and geriatric patients and people with swallowing difficulties due to fast disintegration in the mouth. Typically, they are obtained using the solvent casting method, but other techniques such as 3D printing and electrospinning have already...

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Autores principales: Łyszczarz, Ewelina, Brniak, Witold, Szafraniec-Szczęsny, Joanna, Majka, Tomasz M., Majda, Dorota, Zych, Marta, Pielichowski, Krzysztof, Jachowicz, Renata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8401512/
https://www.ncbi.nlm.nih.gov/pubmed/34452083
http://dx.doi.org/10.3390/pharmaceutics13081122
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author Łyszczarz, Ewelina
Brniak, Witold
Szafraniec-Szczęsny, Joanna
Majka, Tomasz M.
Majda, Dorota
Zych, Marta
Pielichowski, Krzysztof
Jachowicz, Renata
author_facet Łyszczarz, Ewelina
Brniak, Witold
Szafraniec-Szczęsny, Joanna
Majka, Tomasz M.
Majda, Dorota
Zych, Marta
Pielichowski, Krzysztof
Jachowicz, Renata
author_sort Łyszczarz, Ewelina
collection PubMed
description Orodispersible films (ODFs) address the needs of pediatric and geriatric patients and people with swallowing difficulties due to fast disintegration in the mouth. Typically, they are obtained using the solvent casting method, but other techniques such as 3D printing and electrospinning have already been investigated. The decision on the manufacturing method is of crucial importance because it affects film properties. This study aimed to compare electrospun ODFs containing aripiprazole and polyvinyl alcohol with films prepared using casting and 3D printing methods. Characterization of films included DSC and XRD analysis, microscopic analysis, the assessment of mechanical parameters, disintegration, and dissolution tests. Simplified stability studies were performed after one month of storage. All prepared films met acceptance criteria for mechanical properties. Electrospun ODFs disintegrated in 1.0 s, which was much less than in the case of other films. Stability studies have shown the sensitivity of electrospun films to the storage condition resulting in partial recrystallization of ARP. These changes negatively affected the dissolution rate, but mechanical properties and disintegration time remained at a desirable level. The results demonstrated that electrospun fibers are promising solutions that can be used in the future for the treatment of patients with swallowing problems.
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spelling pubmed-84015122021-08-29 The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods Łyszczarz, Ewelina Brniak, Witold Szafraniec-Szczęsny, Joanna Majka, Tomasz M. Majda, Dorota Zych, Marta Pielichowski, Krzysztof Jachowicz, Renata Pharmaceutics Article Orodispersible films (ODFs) address the needs of pediatric and geriatric patients and people with swallowing difficulties due to fast disintegration in the mouth. Typically, they are obtained using the solvent casting method, but other techniques such as 3D printing and electrospinning have already been investigated. The decision on the manufacturing method is of crucial importance because it affects film properties. This study aimed to compare electrospun ODFs containing aripiprazole and polyvinyl alcohol with films prepared using casting and 3D printing methods. Characterization of films included DSC and XRD analysis, microscopic analysis, the assessment of mechanical parameters, disintegration, and dissolution tests. Simplified stability studies were performed after one month of storage. All prepared films met acceptance criteria for mechanical properties. Electrospun ODFs disintegrated in 1.0 s, which was much less than in the case of other films. Stability studies have shown the sensitivity of electrospun films to the storage condition resulting in partial recrystallization of ARP. These changes negatively affected the dissolution rate, but mechanical properties and disintegration time remained at a desirable level. The results demonstrated that electrospun fibers are promising solutions that can be used in the future for the treatment of patients with swallowing problems. MDPI 2021-07-22 /pmc/articles/PMC8401512/ /pubmed/34452083 http://dx.doi.org/10.3390/pharmaceutics13081122 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
Łyszczarz, Ewelina
Brniak, Witold
Szafraniec-Szczęsny, Joanna
Majka, Tomasz M.
Majda, Dorota
Zych, Marta
Pielichowski, Krzysztof
Jachowicz, Renata
The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods
title The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods
title_full The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods
title_fullStr The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods
title_full_unstemmed The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods
title_short The Impact of the Preparation Method on the Properties of Orodispersible Films with Aripiprazole: Electrospinning vs. Casting and 3D Printing Methods
title_sort impact of the preparation method on the properties of orodispersible films with aripiprazole: electrospinning vs. casting and 3d printing methods
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8401512/
https://www.ncbi.nlm.nih.gov/pubmed/34452083
http://dx.doi.org/10.3390/pharmaceutics13081122
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