Literature DB >> 15619879

Susceptibility of some oral microorganisms to chlorhexidine and paramonochlorophenol.

Crystiane Venditi Gomes do Amorim1, Carlos Eduardo Aun, Marcia Pinto Alves Mayer.   

Abstract

Since the use of antimicrobial agents is required in endodontic therapies, this study aimed at determining the minimum inhibitory concentrations (MICs) of chlorhexidine digluconate and paramonochlorophenol (PMC) against microorganisms commonly found in endodontic infections. Both agents were tested by agar dilution tests against Pseudomonas aeruginosa, Staphylococcus aureus, Enterococcus faecalis, Escherichia coli, Candida albicans, Prevotella intermedia, Porphyromonas gingivalis, Porphyromonas endodontalis, Prevotella denticola and Prevotella melaninogenica. The MIC of chlorhexidine ranged from 2.67 to 80.00 microg/ml, and the MIC of PMC from 46.67 to 213.33 microg/ml. The highest MIC value of PMC was detected for E. faecalis whereas E. coli was the most susceptible microorganism to this agent. The highest MIC values of chlorhexidine were observed for P. aeruginosa whereas E. coli and P. denticola were the most susceptible microorganisms to this agent. Since the MIC values observed are much lower than the concentrations currently used in the endodontic therapy, it is suggested that both agents are effective in reducing the microbiota in the root canal.

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Year:  2004        PMID: 15619879     DOI: 10.1590/s1806-83242004000300012

Source DB:  PubMed          Journal:  Braz Oral Res        ISSN: 1806-8324


  7 in total

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Review 4.  Current uses of chlorhexidine for management of oral disease: a narrative review.

Authors:  Zoë L S Brookes; Raul Bescos; Louise A Belfield; Kamran Ali; Anthony Roberts
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Authors:  Carol L Fischer; Katherine S Walters; David R Drake; Deborah V Dawson; Derek R Blanchette; Kim A Brogden; Philip W Wertz
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6.  Electrospun Bioresorbable Membrane Eluting Chlorhexidine for Dental Implants.

Authors:  Pierre Pouponneau; Ophélie Perrey; Céline Brunon; Carol Grossiord; Nicolas Courtois; Vincent Salles; Antoine Alves
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7.  Unraveling the mechanism of octenidine and chlorhexidine on membranes: Does electrostatics matter?

Authors:  Mateusz Rzycki; Dominik Drabik; Kamila Szostak-Paluch; Beata Hanus-Lorenz; Sebastian Kraszewski
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  7 in total

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