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EUCAST Reference Testing of Rezafungin Susceptibility and Impact of Choice of Plastic Plates
Maiken Cavling Arendrup1,2,3, Karin Meinike Jørgensen4, Rasmus Krøger Hare4
1Unit of Mycology, Statens Serum Institut, Copenhagen, Denmark maca@ssi.dk.
Abstract:
Rezafungin is a new long-acting echinocandin currently in phase 3 development. Epidemiological cutoff values are necessary for breakpoint setting but have not been established due to unexplained interlaboratory MIC variations observed in a prior multicenter study. Here we investigated if the choice of microtiter plates affected the variability when anidulafungin was included as a comparator. Testing by the EUCAST E.Def 7.3.1 reference method using tissue and cell culture-treated polystyrene plates (TC plates) and untreated polystyrene plates (UT plates) from four manufacturers was performed. Six control strains (Candida albicans, n = 3; C. krusei, n = 2; C. parapsilosis, n = 1) were tested (520 MICs). Subsequently, 5 or 6 wild-type isolates and 4 or 5 fks mutants of C. albicans, C. glabrata, C. krusei, C. parapsilosis (wild type only), and C. tropicalis were tested (930 MICs). For each strain-plate combination, ≥98% of the repetitive MICs were within 3 dilutions. The rezafungin modal MICs for the collated C. albicans control strain distributions were 0.016 mg/liter across TC plates but 0.03 mg/liter across UT plates, whereas they were 0.004 mg/liter and 0.016 mg/liter, respectively, for anidulafungin. The difference was most pronounced with Falcon plates and was not observed for C. krusei and C. parapsilosis Eleven rezafungin MICs for mutants overlapped with the MICs for wild-type isolates (TC plates, n = 4; UT plates, n = 7). For anidulafungin, five overlaps (all UT plates) were observed. Most overlaps (rezafungin, n = 5; anidulafungin, n = 3) were caused by fks mutants of C. tropicalis (Fks1, F650F/L) and C. glabrata (Fks2. D666Y; rezafungin, n = 2; anidulafungin, n = 1). Interlaboratory variation was low. The use of TC plates resulted in lower MICs, particularly for C. albicans and Falcon plates, ad this was more often the case for anidulafungin than for rezafungin. Adoption of TC plates for EUCAST antifungal susceptibility testing would improve interlaboratory reproducibility and the separation of non-wild-type and wild-type strains.
Insights
Using tissue culture plates for antifungal susceptibility testing, particularly with Candida albicans, can lower MICs and improve interlaboratory reproducibility. This is crucial for setting accurate breakpoints for new antifungals like rezafungin.
Area of Science:
- Mycology
- Antimicrobial Susceptibility Testing
- Pharmacology
Background:
- Rezafungin, a novel long-acting echinocandin, requires established epidemiological cutoff values for breakpoint setting.
- Previous studies noted unexplained interlaboratory MIC variations, hindering breakpoint establishment.
- The impact of microtiter plate type on MIC variability for echinocandins was previously uninvestigated.
Purpose of the Study:
- To investigate the effect of microtiter plate surface treatment on MIC variability for rezafungin and anidulafungin.
- To assess if TC plates improve interlaboratory reproducibility and the discrimination between wild-type and mutant strains.
Main Methods:
- Antifungal susceptibility testing was performed using the EUCAST E.Def 7.3.1 reference method.
- Testing utilized tissue and cell culture-treated (TC) polystyrene plates and untreated (UT) polystyrene plates from four manufacturers.
- MICs were determined for six control strains and a panel of wild-type and *fks* mutant isolates of *Candida* species.
Main Results:
- TC plates consistently yielded lower modal MICs compared to UT plates, particularly for *Candida albicans* and with Falcon brand plates.
- Anidulafungin showed a more pronounced reduction in MICs on TC plates than rezafungin.
- Interlaboratory variation was low, and TC plates improved the separation between wild-type and *fks* mutant strains.
Conclusions:
- The choice of microtiter plate significantly impacts MIC values, especially for *C. albicans*.
- Adoption of TC plates in EUCAST antifungal susceptibility testing can enhance interlaboratory reproducibility.
- Utilizing TC plates aids in better differentiation of non-wild-type from wild-type *Candida* strains.
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