Current intervention strategy is focussed on prevention of initial device colonisation and inhibition of genes encoding biofilm formation.
Determine the minimum inhibitory concentration (MIC) of betadine. Investigate the effect of betadine on icaADBC operon encoded staphylococcal biofilm formation. Investigate wether betadine can prevent bacterial adherence and biofilm formation by inhibition of the encoding genes.
Total RNA for cDNA synthesis was isolated from bacterial at different twofold dilutions of betadine concentrations. Real time polymerase chain reaction was used to quantify effects of betadine on gene expression pattern of the icaADBC operon using the constitutively expressed gyrB gene as internal control. Bacterial was cultivated on polystyrene plates coated with different sub-inhibitory and clinical in-use doses of betadine to assess surface adherence.
A step-wise reduction of biofilm was observed at increasing sub-inhibitory doses of betadine (p<
0.0001). IcaA expression correlated with biofilm formation in staphylococcal organisms. Decrease in icaA expression was strongly associated with an increase in expression in the biofilm repressor gene, icaR. The repressive effect of betadine on biofilm formation by Staphylococcal bacteria is by a separate mechanism from its bacteriostatic mechanism of action.
Prevention of bacterial surface attachment as demonstrated by this study is suggestive that these compounds could be developed as a surface coating agents for orthopaedic implants.