Estelle Cateau1, Marie-Hélène Rodier, Christine Imbert. 1. Université de Poitiers, UMR CNRS 6008, Equipe de Microbiologie Fondamentale et Appliquée, 6 Rue de la Milètrie, BP 199, 86034 Poitiers Cedex, France. estelle.cateau@chu-poitiers.fr
Abstract
OBJECTIVES: Caspofungin and micafungin belong to the echinocandins; the mechanism of action of echinocandins is based on the inhibition of (1,3)-beta-D-glucan synthase. The aim of this study was to investigate in vitro the optimal antifungal lock treatment details against a Candida albicans biofilm. METHODS: An in vitro model of a C. albicans (ATCC 3153 or ATCC 66396) biofilm associated with 100% silicone catheters was used. The effectiveness of the antifungal treatment was assayed against biofilms aged 12 h or 5 days, after exposure to caspofungin (2 mg/L) or micafungin (5 mg/L) for 12 h. The durability of the reduction in the biofilm metabolic activity was investigated (1-3 days after echinocandin treatment). The efficacy of caspofungin and micafungin was determined by evaluating a significant decrease (P < 0.0001) in the metabolic activity of biofilm yeasts. RESULTS: The results showed that the tested antifungal agents used as lock solution significantly (P < 0.0001) reduced the metabolic activity of C. albicans, whatever the biofilm maturation stage (12 h or 5 days old biofilms). The reduction in the metabolic activity of biofilm yeasts was maintained, even after 48 h. CONCLUSIONS: These data suggest that caspofungin (2 mg/L) and micafungin (5 mg/L) could represent good candidates for the reduction or control of fungal biofilms associated with silicone medical devices, as part of an antifungal lock. They were able to induce a significant and persistent reduction in the yeast metabolic activity of intermediate and mature biofilms, 12 h and 5 days old, respectively, when used as catheter lock solutions.
OBJECTIVES:Caspofungin and micafungin belong to the echinocandins; the mechanism of action of echinocandins is based on the inhibition of (1,3)-beta-D-glucan synthase. The aim of this study was to investigate in vitro the optimal antifungal lock treatment details against a Candida albicans biofilm. METHODS: An in vitro model of a C. albicans (ATCC 3153 or ATCC 66396) biofilm associated with 100% silicone catheters was used. The effectiveness of the antifungal treatment was assayed against biofilms aged 12 h or 5 days, after exposure to caspofungin (2 mg/L) or micafungin (5 mg/L) for 12 h. The durability of the reduction in the biofilm metabolic activity was investigated (1-3 days after echinocandin treatment). The efficacy of caspofungin and micafungin was determined by evaluating a significant decrease (P < 0.0001) in the metabolic activity of biofilm yeasts. RESULTS: The results showed that the tested antifungal agents used as lock solution significantly (P < 0.0001) reduced the metabolic activity of C. albicans, whatever the biofilm maturation stage (12 h or 5 days old biofilms). The reduction in the metabolic activity of biofilm yeasts was maintained, even after 48 h. CONCLUSIONS: These data suggest that caspofungin (2 mg/L) and micafungin (5 mg/L) could represent good candidates for the reduction or control of fungal biofilms associated with silicone medical devices, as part of an antifungal lock. They were able to induce a significant and persistent reduction in the yeast metabolic activity of intermediate and mature biofilms, 12 h and 5 days old, respectively, when used as catheter lock solutions.
Authors: Melissa J Jacobson; Kathryn E Steckelberg; Kerryl E Piper; James M Steckelberg; Robin Patel Journal: Antimicrob Agents Chemother Date: 2009-03-23 Impact factor: 5.191
Authors: M Guembe; J Guinea; L J Marcos-Zambrano; A Fernández-Cruz; T Peláez; P Muñoz; E Bouza Journal: Antimicrob Agents Chemother Date: 2014-06-23 Impact factor: 5.191
Authors: Carlo Tascini; Maria Grazia Bongiorni; Enrico Tagliaferri; Antonello Di Paolo; Sarah Flammini; Ezio Soldati; Alessandro Leonildi; Andrea Di Cori; Francesco Menichetti Journal: Mycopathologia Date: 2012-10-17 Impact factor: 2.574