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Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer

The efficiency of lung drug delivery of nebulized drugs is governed by aerosol quality, which depends both on the aerosolization process itself but also on the properties of aerosol precursors. This paper determines physicochemical properties of four analogous micro-suspensions of a micronized stero...

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Autores principales: Dobrowolska, Katarzyna, Emeryk, Andrzej, Janeczek, Kamil, Krzosa, Radosław, Pirożyński, Michał, Sosnowski, Tomasz R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10059591/
https://www.ncbi.nlm.nih.gov/pubmed/36986613
http://dx.doi.org/10.3390/pharmaceutics15030752
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author Dobrowolska, Katarzyna
Emeryk, Andrzej
Janeczek, Kamil
Krzosa, Radosław
Pirożyński, Michał
Sosnowski, Tomasz R.
author_facet Dobrowolska, Katarzyna
Emeryk, Andrzej
Janeczek, Kamil
Krzosa, Radosław
Pirożyński, Michał
Sosnowski, Tomasz R.
author_sort Dobrowolska, Katarzyna
collection PubMed
description The efficiency of lung drug delivery of nebulized drugs is governed by aerosol quality, which depends both on the aerosolization process itself but also on the properties of aerosol precursors. This paper determines physicochemical properties of four analogous micro-suspensions of a micronized steroid (budesonide, BUD) and seeks relationships between these properties and the quality of the aerosol emitted from a vibrating mesh nebulizer (VMN). Despite the same BUD content in all tested pharmaceutical products, their physicochemical characteristics (liquid surface tension, viscosity, electric conductivity, BUD crystal size, suspension stability, etc.) are not identical. The differences have a weak influence on droplet size distribution in the mists emitted from the VMN and on theoretical (calculated) regional aerosol deposition in the respiratory system but, simultaneously, there is an influence on the amount of BUD converted by the nebulizer to aerosol available for inhalation. It is demonstrated that the maximum inhaled BUD dose is below 80–90% of the label dose, depending on the nebulized formulation. It shows that nebulization of BUD suspensions in VMN is sensitive to minor dissimilarities among analogous (generic) pharmaceutics. The potential clinical relevance of these findings is discussed.
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spelling pubmed-100595912023-03-30 Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer Dobrowolska, Katarzyna Emeryk, Andrzej Janeczek, Kamil Krzosa, Radosław Pirożyński, Michał Sosnowski, Tomasz R. Pharmaceutics Article The efficiency of lung drug delivery of nebulized drugs is governed by aerosol quality, which depends both on the aerosolization process itself but also on the properties of aerosol precursors. This paper determines physicochemical properties of four analogous micro-suspensions of a micronized steroid (budesonide, BUD) and seeks relationships between these properties and the quality of the aerosol emitted from a vibrating mesh nebulizer (VMN). Despite the same BUD content in all tested pharmaceutical products, their physicochemical characteristics (liquid surface tension, viscosity, electric conductivity, BUD crystal size, suspension stability, etc.) are not identical. The differences have a weak influence on droplet size distribution in the mists emitted from the VMN and on theoretical (calculated) regional aerosol deposition in the respiratory system but, simultaneously, there is an influence on the amount of BUD converted by the nebulizer to aerosol available for inhalation. It is demonstrated that the maximum inhaled BUD dose is below 80–90% of the label dose, depending on the nebulized formulation. It shows that nebulization of BUD suspensions in VMN is sensitive to minor dissimilarities among analogous (generic) pharmaceutics. The potential clinical relevance of these findings is discussed. MDPI 2023-02-23 /pmc/articles/PMC10059591/ /pubmed/36986613 http://dx.doi.org/10.3390/pharmaceutics15030752 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
Dobrowolska, Katarzyna
Emeryk, Andrzej
Janeczek, Kamil
Krzosa, Radosław
Pirożyński, Michał
Sosnowski, Tomasz R.
Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer
title Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer
title_full Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer
title_fullStr Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer
title_full_unstemmed Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer
title_short Influence of Physicochemical Properties of Budesonide Micro-Suspensions on Their Expected Lung Delivery Using a Vibrating Mesh Nebulizer
title_sort influence of physicochemical properties of budesonide micro-suspensions on their expected lung delivery using a vibrating mesh nebulizer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10059591/
https://www.ncbi.nlm.nih.gov/pubmed/36986613
http://dx.doi.org/10.3390/pharmaceutics15030752
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