Repository logo
  • English
  • Deutsch
  • Español
  • Français
  • Log In
    New user? Click here to register.Have you forgotten your password?

  • English
  • Deutsch
  • Español
  • Français
  • Log In
    New user? Click here to register.Have you forgotten your password?
Repository logo
  • Communities & Collections
  • Research Outputs
  • Fundings & Projects
  • Researchers
  • Statistics
  1. Home
  2. Current Research Information System UV
  3. Publicaciones
  4. Development, Characterization, And In Vitro Testing Of Co-Delivered Antimicrobial Dry Powder Formulation For The Treatment Of Pseudomonas Aeruginosa Biofilms
 
  • Details
Options

Development, Characterization, And In Vitro Testing Of Co-Delivered Antimicrobial Dry Powder Formulation For The Treatment Of Pseudomonas Aeruginosa Biofilms

Journal
Journal of Pharmaceutical Sciences
Date Issued
2018-04-24
Author(s)
Tania F. Bahamondez-Canas
Silvia Ferrati
Moraga, Daniel  
Facultad de Farmacia  
Hugh D.C. Smyth
DOI
10.1016/j.xphs.2018.04.015
WoS ID
WOS:000441020200020
Abstract
Pseudomonas aeruginosa is an opportunistic bacteria responsible for recurrent lung infections. Previously, we demonstrated that certain materials improved the activity of tobramycin (Tob) against P. aeruginosa biofilms in vitro. We aimed to develop prototype dry powder formulations comprising Tob and a mixture of excipients and test its aerodynamic properties and antimicrobial activity. First, we evaluated different combinations of excipients with Tob in solution against P. aeruginosa biofilms. We selected the compositions with the highest activity, to prepare dry powders by spray drying. The powders were characterized by morphology, bulk density, water content, and particle size distributions. Finally, the antimicrobial activity of the powders was tested. The combinations of Tob (64 μg/mL) with L-alanine and L-proline (at 10 and 20 mM; formulations 1 and 2, respectively) and with L-alanine and succinic acid (at 20 mM; formulation 3) showed the highest efficacies in vitro and were prepared as dry powders. Formulation 1 had the best aerodynamic performance as indicated by the fine particle fraction and the best in vitro activity against P. aeruginosa biofilms. Formulation 3 represents a good candidate for further optimization because it demonstrated good dispersibility potential and optimization of the particle size distribution may achieve high delivery efficiencies.
Subjects

Chemistry, Medicinal

Chemistry, Multidisci...

Pharmacology And Phar...

Pharmaceutical Scienc...

OCDE Subjects

Medical And Health Sc...

Quartile (Date Issued)
Q2
License
acceso restringido

  • Cookie settings
  • Privacy policy
  • End User Agreement
  • Send Feedback

Hosting & Support by

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science