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Vet Dermatol ; 27(3): 152-e39, 2016 Jun.
Article in English | MEDLINE | ID: mdl-27109449

ABSTRACT

BACKGROUND: Topical antimicrobial agents are important for the management of cutaneous infections. For topical antimicrobial agents, in vitro efficacy data are limited. OBJECTIVES: To determine and compare the minimum bactericidal/fungicidal concentrations (MBCs/MFCs) of several topical antimicrobial agents against veterinary pathogens. MATERIALS AND METHODS: Two chlorhexidine, two oxychlorine based products (NaOCl & HOCl) lime sulfur (LS), manuka honey (MH) and hydrocortisone aceponate (HCA) were tested against American Type Culture Collection (ATCC) and clinical isolates: meticillin susceptible and resistant Staphylococcus pseudintermedius (MSSP), qac A/B carrying MSSP, antimicrobial susceptible and extended spectrum beta-lactamase producing Escherichia coli, multidrug-resistant Pseudomonas aeruginosa and Malassezia pachydermatis. The MBCs/MFCs were measured, where available, using a broth microdilution method; isolates were incubated for 3 and 10 min. RESULTS: Chlorhexidine and isopropyl alcohol (Chl(1) ) showed significantly lower MBCs (0.46 mg/L -937.50 mg/L, P = 0.027) compared to chlorhexidine and climbazole (Chl², 58.59 mg/L-1875 mg/L). NaOCl and HOCl showed excellent antimicrobial activity with HOCl having significantly lower MBCs compared to NaOCl (0.03 mg/L-1.72 mg/L and 0.03 mg/L-1.95 mg/L, respectively, P = 0.042). The detectable MBCs for LS and HCA were high, being close to the starting concentration (5,000 mg/L and 146 mg/L, respectively). The MBC/MFC for MH was not detectable. Amongst all test products there was no significant effect of contact time or isolate resistance status. CONCLUSIONS AND CLINICAL IMPORTANCE: Chlorhexidine, NaOCl and HOCl demonstrated low MBCs against tested organisms, suggesting potential in vivo efficacy. The selection of an appropriate antimicrobial agent, however, cannot be based exclusively upon MBC/MFC data; other factors should be considered.


Subject(s)
Bacteria/drug effects , Calcium Compounds/pharmacology , Chlorhexidine/pharmacology , Honey , Hydrocortisone/analogs & derivatives , Malassezia/drug effects , Sulfides/pharmacology , Administration, Topical , Animals , Anti-Bacterial Agents/pharmacology , Anti-Infective Agents, Local/pharmacology , Anti-Inflammatory Agents/pharmacology , Drug Resistance, Multiple, Bacterial , Escherichia coli/drug effects , Hydrocortisone/pharmacology , Pilot Projects , Pseudomonas aeruginosa/drug effects , Staphylococcus/drug effects
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