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Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation

Although aerosol delivery through mechanical ventilators has been used to administer various medications, little is known of administration with colistin. This in vitro evaluation aimed to evaluate size distribution of colistin delivery by different types of nebulizers and concentrations during mech...

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Autores principales: Liu, Ching-Yi, Ko, Hsin-Kuo, Fink, James B., Wan, Gwo-Hwa, Huang, Chung-Chi, Chen, Yu-Chun, Lin, Hui-Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6781281/
https://www.ncbi.nlm.nih.gov/pubmed/31491870
http://dx.doi.org/10.3390/pharmaceutics11090459
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author Liu, Ching-Yi
Ko, Hsin-Kuo
Fink, James B.
Wan, Gwo-Hwa
Huang, Chung-Chi
Chen, Yu-Chun
Lin, Hui-Ling
author_facet Liu, Ching-Yi
Ko, Hsin-Kuo
Fink, James B.
Wan, Gwo-Hwa
Huang, Chung-Chi
Chen, Yu-Chun
Lin, Hui-Ling
author_sort Liu, Ching-Yi
collection PubMed
description Although aerosol delivery through mechanical ventilators has been used to administer various medications, little is known of administration with colistin. This in vitro evaluation aimed to evaluate size distribution of colistin delivery by different types of nebulizers and concentrations during mechanical ventilation. Colistin methanesulfonate (colistin) for injection was dissolved in 6 mL of distilled water to produce a low concentration (L; 156 mg) and a high concentration (H; 312 mg). A dose volume of 6 mL was placed in a vibrating mesh nebulizer (VMN) and a jet nebulizer (JN). The inhaled mass (mean ± SD) of the VMN-L (53.80 ± 14.79 mg) was greater than both the JN-L (19.82 ± 3.34 mg, P = 0.001) and JN-H (31.72 ± 4.48 mg, P = 0.017). The nebulization time of the VMN-L (42.35 ± 2.30 min) was two times longer than the JN-L (21.12 ± 0.8 min) or JN-H (21.65 ± 0.42 min; P < 0.001). The mass median aerodynamic distal to the endotracheal tube was within a similar range at 2.03 to 2.26 μm (P = 0.434), independent of neb or formulation concentration. In conclusion, the VMN-L yields greater inhaled mass than the JN with either concentration. Therefore, a standard nominal dose of colistin results in a higher delivered dose during mechanical ventilation with a VMN compared with a JN and may be considered the preferred device. If JN must be used, multiple doses of low concentration colistin may compensate for poor delivery performance.
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spelling pubmed-67812812019-10-30 Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation Liu, Ching-Yi Ko, Hsin-Kuo Fink, James B. Wan, Gwo-Hwa Huang, Chung-Chi Chen, Yu-Chun Lin, Hui-Ling Pharmaceutics Article Although aerosol delivery through mechanical ventilators has been used to administer various medications, little is known of administration with colistin. This in vitro evaluation aimed to evaluate size distribution of colistin delivery by different types of nebulizers and concentrations during mechanical ventilation. Colistin methanesulfonate (colistin) for injection was dissolved in 6 mL of distilled water to produce a low concentration (L; 156 mg) and a high concentration (H; 312 mg). A dose volume of 6 mL was placed in a vibrating mesh nebulizer (VMN) and a jet nebulizer (JN). The inhaled mass (mean ± SD) of the VMN-L (53.80 ± 14.79 mg) was greater than both the JN-L (19.82 ± 3.34 mg, P = 0.001) and JN-H (31.72 ± 4.48 mg, P = 0.017). The nebulization time of the VMN-L (42.35 ± 2.30 min) was two times longer than the JN-L (21.12 ± 0.8 min) or JN-H (21.65 ± 0.42 min; P < 0.001). The mass median aerodynamic distal to the endotracheal tube was within a similar range at 2.03 to 2.26 μm (P = 0.434), independent of neb or formulation concentration. In conclusion, the VMN-L yields greater inhaled mass than the JN with either concentration. Therefore, a standard nominal dose of colistin results in a higher delivered dose during mechanical ventilation with a VMN compared with a JN and may be considered the preferred device. If JN must be used, multiple doses of low concentration colistin may compensate for poor delivery performance. MDPI 2019-09-05 /pmc/articles/PMC6781281/ /pubmed/31491870 http://dx.doi.org/10.3390/pharmaceutics11090459 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Ching-Yi
Ko, Hsin-Kuo
Fink, James B.
Wan, Gwo-Hwa
Huang, Chung-Chi
Chen, Yu-Chun
Lin, Hui-Ling
Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation
title Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation
title_full Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation
title_fullStr Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation
title_full_unstemmed Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation
title_short Size Distribution of Colistin Delivery by Different Type Nebulizers and Concentrations During Mechanical Ventilation
title_sort size distribution of colistin delivery by different type nebulizers and concentrations during mechanical ventilation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6781281/
https://www.ncbi.nlm.nih.gov/pubmed/31491870
http://dx.doi.org/10.3390/pharmaceutics11090459
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