Journal Article
Print(0)
The Journal of antimicrobial chemotherapy
J.Antimicrob.Chemother.
Dec
62
6
1281
1284
LR: 20141120; JID: 7513617; 0 (Antifungal Agents); 0 (Echinocandins); 0 (Formazans); 0 (Pyrimidines); 0 (Triazoles); 70709-62-5 (1,5-bis(2-methoxy-4-nitro-5-sulfophenyl)-3-((phenylamino)carbonyl)formazan); 7XU7A7DROE (Amphotericin B); F0XDI6ZL63 (caspofun
England
1460-2091; 0305-7453
PMID: 18819968
eng
Comparative Study; Journal Article; Research Support, Non-U.S. Gov't; IM
10.1093/jac/dkn402 [doi]
Unknown(0)
18819968
OBJECTIVES: Aspergillus fumigatus undergoes morphological transition throughout its growth and development. These changes have direct implications for the effectiveness of antifungal treatment. Here we report the in vitro antifungal activity of voriconazole, amphotericin B and caspofungin against three specific phases of multicellular development of A. fumigatus. METHODS: A. fumigatus conidia were propagated for 8, 12 and 24 h prior to antifungal challenge. The resultant activity of the three agents tested was determined using an XTT reduction assay to assess both endpoint and time-kill susceptibility profiles. RESULTS: Endpoint susceptibility testing demonstrated a time-dependent decrease in efficacy for all three antifungal agents as the complexity of the A. fumigatus hyphal structure developed. Overall, amphotericin B exhibited the best spectrum of activity at each phase of growth, but was comparable to voriconazole against germinated conidial growth (8 h). Later, both voriconazole and caspofungin were ineffective against complex mycelial structures (12 and 24 h). Time-kill studies demonstrated that amphotericin B was significantly more efficacious at reducing A. fumigatus metabolism than both voriconazole and caspofungin for all three growth phases examined, most notably after 1 h of drug exposure (P < 0.001). CONCLUSIONS: Overall, the data presented demonstrate that treatment of actively growing A. fumigatus cells with antifungal agents is more efficacious than treating mature structures in vitro. Amphotericin B was consistently more effective against each phase and displayed rapid effects, and therefore may be a suitable option for managing patient groups at risk from aspergillosis infections.
Amphotericin B/pharmacology, Antifungal Agents/pharmacology, Aspergillus fumigatus/drug effects, Biofilms/drug effects, Echinocandins/pharmacology, Formazans/metabolism, Humans, Microbial Sensitivity Tests/methods, Microbial Viability, Mycelium/drug effects, Oxidation-Reduction, Pyrimidines/pharmacology, Spores, Fungal/drug effects, Triazoles/pharmacology, Voriconazole
Mowat,E., Lang,S., Williams,C., McCulloch,E., Jones,B., Ramage,G.
Department of Biological and Biomedical Sciences, Glasgow Caledonian University, Glasgow, UK.
20080926
http://vp9py7xf3h.search.serialssolutions.com/?charset=utf-8&pmid=18819968
2008