Clinical isolates and laboratory referenceCandidaspecies and strains have varying abilities to form biofilms
Autor: | Eric C. Reynolds, Michael McCullough, Neil M O'Brien-Simpson, Ali D. Alnuaimi |
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Rok vydání: | 2013 |
Předmět: |
Microbiological Techniques
Cryptococcus neoformans Staining and Labeling Candida glabrata biology Candidiasis Biofilm Virulence General Medicine biochemical phenomena metabolism and nutrition biology.organism_classification Applied Microbiology and Biotechnology Microbiology Yeast Corpus albicans Biofilms Humans Laboratories Candida albicans Candida dubliniensis Candida |
Zdroj: | FEMS Yeast Research. 13:689-699 |
ISSN: | 1567-1356 |
DOI: | 10.1111/1567-1364.12068 |
Popis: | Candida biofilms are a major virulence trait for this yeast. In this study, the biofilm-forming ability of the major medically important clinical and laboratory reference strains was compared. Biofilms were quantified using traditional methods, that is, crystal violet (CV), tetrazolium (XTT) reduction and colony-forming unit assays (CFU), and two new methods: an automated cell counter (ACC) and biofilm suspension turbidity (BST) method. Biofilms could be categorized based on biofilm biomass (high, medium and low) and growth state (high and low). Candida albicans genotypes, A, B and C, showed medium biofilm mass and low growth rate, and only one C. albicans laboratory strain, ATCC MYA-2719, matched this biofilm category. Of all non-albicans Candida species tested, only Candida dubliniensis and Candida glabrata laboratory and clinical isolates had similar biofilm development. The ACC and BST methods for measuring biofilm significantly correlated with CV and CFU biofilm mass measurements. Thus, biofilm mass can be rapidly assessed using biofilm disruptive/cellular nondestructive methods allowing yeast biofilm cells to be used for further analysis. In conclusion, Candida laboratory reference strains and clinical isolates have been shown to form biofilms at different rates; hence for validity, the selection of laboratory reference strains in biofilm studies may be critical for virulence assessment. |
Databáze: | OpenAIRE |
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