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DEVELOPMENT OF RESISTANCE OF MUTANS STREPTOCOCCI AND PORPHYROMONAS GINGIVALIS TO CHLORHEXIDINE DIGLUCONATE AND FLUORIDE-CONTAINING MOUTHRINSES
1UZB - University Center for Dental Medicine, University of Basel, Hebelstrasse 3, 4056 Basel, Switzerland
Objective: The aim if this study was to determine the minimal inhibitory concentrations of chlorhexidine digluconate and an amine fluoride/stannous fluoride-containing mouthrinse against Porphyromonas gingivalis and mutans streptococci during an experimental long-term subinhibitory exposition.
Material and methods: Five P. gingivalis strains and four mutans streptococci were subcultivated for 20–30 passages in subinhibitory concentrations of chlorhexidine digluconate or an amine fluoride/stannous fluoride-containing mouthrinse.
Results: Pre-passaging minimal inhibitory concentrations for chlorhexidine ranged from 0.5 to 2 mg/l for mutans streptococci and from 2 to 4 mg/l for the P. gingivalis isolates. For the amine fluoride/stannous fluoride-containing mouthrinse minimal inhibitory values from 0.125 to 0.25 % for the mutans streptococci and from 0.063 to 0.125 % for the P. gingivalis isolates were determined. Two- to fourfold increased minimal inhibitory concentrations against chlorhexidine were detected
for two of the five P. gingivalis isolates, whereas no increase in minimal inhibitory concentrations was found for the mutans streptococci after repeated passaging through subinhibitory concentrations. Repeated exposure to subinhibitory concentrations of the amine fluoride/stannous fluoride-containing mouthrinse did not alter the minimally inhibitory concentrations of the bacterial isolates tested.
Conclusion: Chlorhexidine and the amine fluoride/stannous fluoride-containing mouthrinse are effective inhibitory agents against the oral bacterial isolates tested. No general development of resistance against chlorhexidine or the amine fluoride/stannous fluoride-containing mouthrinse was detected. However, some strains showed potential to develop resistance
against chlorhexidine after prolonged exposure.

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