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Effects of Iron Chelators on the Formation and Development of Aspergillus fumigatus Biofilm
Author(s) -
Hasan Nazik,
John Penner,
Jose A. G. Ferreira,
Janus A. J. Haagensen,
Kevin Cohen,
Alfred M. Spormann,
Marife Martinez,
Vicky Chen,
Joe L. Hsu,
Karl V. Clemons,
David A. Stevens
Publication year - 2015
Publication title -
antimicrobial agents and chemotherapy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.07
H-Index - 259
eISSN - 1070-6283
pISSN - 0066-4804
DOI - 10.1128/aac.01684-15
Subject(s) - biofilm , aspergillus fumigatus , chemistry , microbiology and biotechnology , deferoxamine , nuclear chemistry , biochemistry , bacteria , biology , genetics
Iron acquisition is crucial for the growth ofAspergillus fumigatus .A. fumigatus biofilm formation occursin vitro andin vivo and is associated with physiological changes. In this study, we assessed the effects of Fe chelators on biofilm formation and development. Deferiprone (DFP), deferasirox (DFS), and deferoxamine (DFM) were tested for MIC against a reference isolate via a broth macrodilution method. The metabolic effects (assessed by XTT [2,3-bis[2-methoxy-4-nitro-5-sulfophenyl]-2H-tetrazolium-5-carboxanilide inner salt]) on biofilm formation by conidia were studied upon exposure to DFP, DFM, DFP plus FeCl3 , or FeCl3 alone. A preformed biofilm was exposed to DFP with or without FeCl3 . The DFP and DFS MIC50 against planktonicA. fumigatus was 1,250 μM, and XTT gave the same result. DFM showed no planktonic inhibition at concentrations of ≤2,500 μM. By XTT testing, DFM concentrations of <1,250 μM had no effect, whereas 2,500 μM increased biofilms forming inA. fumigatus or preformed biofilms (P < 0.01). DFP at 156 to 2,500 μM inhibited biofilm formation (P < 0.01 to 0.001) in a dose-responsive manner. Biofilm formation with 625 μM DFP plus any concentration of FeCl3 was lower than that in the controls (P < 0.05 to 0.001). FeCl3 at ≥625 μM reversed the DFP inhibitory effect (P < 0.05 to 0.01), but the reversal was incomplete compared to the controls (P < 0.05 to 0.01). For preformed biofilms, DFP in the range of ≥625 to 1,250 μM was inhibitory compared to the controls (P < 0.01 to 0.001). FeCl3 at ≥625 μM overcame inhibition by 625 μM DFP (P < 0.001). FeCl3 alone at ≥156 μM stimulated biofilm formation (P < 0.05 to 0.001). PreformedA. fumigatus biofilm increased with 2,500 μM FeCl3 only (P < 0.05). In a strain survey, various susceptibilities of biofilms ofA. fumigatus clinical isolates to DFP were noted. In conclusion, iron stimulates biofilm formation and preformed biofilms. Chelators can inhibit or enhance biofilms. Chelation may be a potential therapy forA. fumigatus , but we show here that chelators must be chosen carefully. Individual isolate susceptibility assessments may be needed.

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