Biomicrofluidics · 2012 · 26 citations · 66 references
EngineeringInflammatory Lung DiseaseCystic Fibrosis AirwaysOrgan-on-a-chipBiomedical EngineeringRespiratory InfectionMicrofluidicsBiofluid DynamicAntimicrobial ResistanceBiophysicsCystic Fibrosis PatientsRespiration (Physiology)Clinical MicrobiologyAntibioticsLab-on-a-chipCystic Fibrosis SinusesInfectious Respiratory DiseaseMicrobiologyMedicine
A modular microfluidic airways model system that can simulate the changes in oxygen tension in different compartments of the cystic fibrosis (CF) airways was designed, developed, and tested. The fully reconfigurable system composed of modules with different functionalities: multichannel peristaltic pumps, bubble traps, gas exchange chip, and cell culture chambers. We have successfully applied this system for studying the antibiotic therapy of Pseudomonas aeruginosa, the bacteria mainly responsible for morbidity and mortality in cystic fibrosis, in different oxygen environments. Furthermore, we have mimicked the bacterial reinoculation of the aerobic compartments (lower respiratory tract) from the anaerobic compartments (cystic fibrosis sinuses) following an antibiotic treatment. This effect is hypothesised as the one on the main reasons for recurrent lung infections in cystic fibrosis patients.
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Reconstituting Organ-Level Lung Functions on a Chip
Dongeun Huh, Benjamin D. Matthews, Akiko Mammoto et al. · Science · 2010 · 4K citations · Full text
Marshall Charles Walters, Frank Roe, Amandine Bugnicourt et al. · Antimicrobial Agents and Chemotherapy · 2002 · 948 citations · Full text