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BMC Microbiol ; 10: 282, 2010 Nov 09.
Article in English | MEDLINE | ID: mdl-21062489

ABSTRACT

BACKGROUND: Pseudomonas aeruginosa is commonly associated with contact lens (CL) -related eye infections, for which bacterial adhesion and biofilm formation upon hydrogel CLs is a specific risk factor. Whilst P. aeruginosa has been widely used as a model organism for initial biofilm formation on CLs, in-vitro models that closely reproduce in-vivo conditions have rarely been presented. RESULTS: In the current investigation, a novel in-vitro biofilm model for studying the adherence of P. aeruginosa to hydrogel CLs was established. Nutritional and interfacial conditions similar to those in the eye of a CL wearer were created through the involvement of a solid:liquid and a solid:air interface, shear forces and a complex artificial tear fluid. Bioburdens varied depending on the CL material and biofilm maturation occurred after 72 h incubation. Whilst a range of biofilm morphologies were visualised including dispersed and adherent bacterial cells, aggregates and colonies embedded in extracellular polymer substances (EPS), EPS fibres, mushroom-like formations, and crystalline structures, a compact and heterogeneous biofilm morphology predominated on all CL materials. CONCLUSIONS: In order to better understand the process of biofilm formation on CLs and to test the efficacy of CL care solutions, representative in-vitro biofilm models are required. Here, we present a three-phase biofilm model that simulates the environment in the eye of a CL wearer and thus generates biofilms which resemble those commonly observed in-situ.


Subject(s)
Bacterial Adhesion , Biofilms , Contact Lenses/microbiology , Eye Infections, Bacterial/microbiology , Pseudomonas Infections/microbiology , Pseudomonas aeruginosa/physiology , Humans , Hydrogel, Polyethylene Glycol Dimethacrylate/analysis , Models, Biological , Pseudomonas aeruginosa/growth & development
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