Performance of the VITEK® MS system for the identification of filamentous fungi in a microbiological laboratory in Chile
Journal
PLOS ONE
ISSN
1932-6203
Date Issued
2024-12-23
Author(s)
Rodrigo Cruz
Pérez Villa, Inia
Carmen Varela
Cristina Díaz
Patricia García
Francisca Valdivieso
Type
journal-article
Abstract
<jats:p>Filamentous fungi are an emergent cause of severe infections in immunocompromised patients. Timely and accurate identification is crucial to initiate appropriate therapy. Traditional identification methods are time-consuming, labor-intensive, and operator-dependent. Matrix-assisted laser desorption/ionization-time-of-flight (MALDI-TOF) mass spectrometry is a rapid and easy-to-perform identification method. The effectiveness of a commercial MALDI-TOF MS platform to identify filamentous fungi in a clinical laboratory was evaluated. The study included 67 fungal isolates from 35 species/species complexes, which were identified and confirmed in mycology reference laboratories; 32 derived from clinical samples, 34 from strain collections and one was an ATCC strain. The study used the VITEK<jats:sup>®</jats:sup> MS system (v3.2.0 database), after sample extraction by VITEK<jats:sup>®</jats:sup> MS Mould Kit. Results were classified as “correct species”, “correct species complex”, “correct genus”and “no identification”. VITEK<jats:sup>®</jats:sup> MS correctly identified 91.0% of isolates (58.2% to species, 29.9% to species complex, and 1.5% to genus level only). In 82%, the result matched the species/species complex identified by reference methods. No misidentifications were observed. The kit was rapid and easy to use. In conclusion, the VITEK<jats:sup>®</jats:sup> MS system showed a high capability to accurately identify filamentous fungi in a clinical laboratory.</jats:p>
Subjects
chile
;
fungi
;
humans
;
laboratories
;
mycoses
;
spectrometry, mass, matrix-assisted laser desorption-ionization
;
trehalose
;
alternaria alternata
;
article
;
aspergillus
;
aspergillus brasiliensis
;
aspergillus calidoustus
;
aspergillus flavus
;
aspergillus fumigatus
;
aspergillus nidulans
;
aspergillus niger
;
aspergillus sydowii
;
aspergillus terreus
;
aspergillus tritici
;
aspergillus versicolor
;
chile
;
coccidioides
;
coccidioides posadasii
;
controlled study
;
curvularia spicifera
;
epidermophyton floccosum
;
escherichia coli
;
filamentous fungus
;
fungus culture
;
fungus identification
;
fusarium proliferatum
;
fusarium solani
;
lichtheimia corymbifera
;
matrix assisted laser desorption ionization time of flight mass spectrometry
;
microbiology
;
mucor
;
mucor velutinosus
;
nonhuman
;
penicillium
;
penicillium brevicompactum
;
penicillium canescens
;
penicillium chrysogenum
;
penicillium expansum
;
penicillium roqueforti
;
polymerase chain reaction
;
purpureocillium lilacinum
;
rhizopus delemar
;
rhizopus microsporus
;
rhizopus oryzae
;
sarocladium
;
sarocladium kiliense
;
sarocladium strictum
;
scedosporium boydii
;
sequence analysis
;
species identification
;
sporothrix
;
sporothrix globosa
;
trichophyton rubrum
;
trichophyton tonsurans
;
chile
;
classification
;
diagnosis
;
fungus
;
human
;
isolation and purification
;
laboratory
;
matrix-assisted laser desorption-ionization mass spectrometry
;
microbiology
;
procedures