This submission belongs to the session a. Drug Delivery Using Nanotechnology of the event The 1st Electronic Conference on Pharmaceutical Sciences
Published date
26 Feb, 2011
Citation
Ian Larson, David Morton, John Hale, Jian Li, Teresa Jong, Investigating the Particle Engineering of Colistin for Pulmonary Delivery, in Proceedings of The 1st Electronic Conference on Pharmaceutical Sciences, 1 March–31 March 2011, MDPI: Basel, Switzerland, doi: 10.3390/ecps2011-00520
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Investigating the Particle Engineering of Colistin for Pulmonary Delivery
Ian Larson 1
David Morton 1
John Hale 1
Jian Li 1
Teresa Jong 1
1. Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University (Parkville Campus), VIC 3052, Australia
Abstract
Introduction: Colistin, a cyclic polypeptide linked to a fatty acyl tail, is an old antibiotic with potential toxicity when administered intravenously; however, for treating lung infections, dry powder inhalers (DPIs) have potential to deliver high doses directly to the site of infection. This study has examined the potential to engineer microparticles of colistin, with optimised surface energy, to create particles for effective use in DPIs. Methods: Spray dried colistin sulphate powders were obtained using a Buchi Mini-Spray Drier 190. Inverse Gas Chromatography (IGC) was used to determine the surface energies of the different particles. In vitro dispersion efficiency was measured by aerosolising into a twin stage impinger. Results and Discussion: Spray drying colistin increased the number of inhalable particles (< 6.5 µm) from 23.6% to 78%, providing a substantial improvement in the particle size distribution for delivery to the lower lung.This contributed to the increase in fine particle fraction (FPF) significantly (p< 0.001) from 15 % to 39 % when dispersed from a common commercial device. All spray dried formulations have a significantly higher (p < 0.001) fine particle fraction percentage than colistin as received. IGC surface energy measurements found there is a significantly lower (p
Keywords
powder formulation
spray drying
inverse phase gas chromatography
colistin sulphate
antibiotic
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