Multilaboratory Evaluation of the MALDI-TOF Mass Spectrometry System, MicroIDSys Elite, for the Identification of Medically Important Filamentous Fungi

With the increasing number of fungal infections and immunocompromised patients, rapid and accurate fungal identification is required in clinical microbiology laboratories. We evaluated the applicability of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) sy...

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Veröffentlicht in:Mycopathologia (1975) 2021-03, Vol.186 (1), p.15-26
Hauptverfasser: Lee, Hyeyoung, Oh, Junsang, Sung, Gi-Ho, Koo, Jehyun, Lee, Min-Ha, Lee, Hyun Ji, Cho, Sung-Il, Choi, Ji Seon, Park, Yeon-Joon, Shin, Jeong Hwan, Lee, Hae Kyung, Kim, Soo-Young, Lee, Chae Hoon, Kim, Young Ree, Sohn, Yong-Hak, Kim, Woo Jin, Ryu, Sook Won, Lee, Nam Yong, Huh, Hee Jae, Kim, Jayoung
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Sprache:eng
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Zusammenfassung:With the increasing number of fungal infections and immunocompromised patients, rapid and accurate fungal identification is required in clinical microbiology laboratories. We evaluated the applicability of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) system, MicroIDSys Elite (ASTA Corp., South Korea) for the identification of medically important filamentous fungi. A total of 505 strains comprising 37 genera and 90 species collected from 11 Korean hospitals were sent to the microbiology laboratory of International St. Mary’s Hospital. All isolates were tested using MicroIDSys Elite, and data were analyzed using the MoldDB v.1.22 database (ASTA). Correct identification rates were compared with the multigene sequencing results. MicroIDSys Elite correctly identified 86.5% (437/505) and 88.9% (449/505) of all tested isolates at the species and genus level, respectively. About 98.2% of Aspergillus isolates were identified at the species level, including cryptic and rare species of A. calidoustus, A. tamarii, A. lentulus , A. versicolor and A. aculeatus . MicroIDSys Elite identified 75.0% of basidiomycetes, including Schizophyllum commune, and 84.3% of the dermatophytes. It also distinguished Sprothrix globosa at the species level. The mean scores of total isolates corresponding to correct species identification were significantly higher than those obtained for genus-level identification (253.5 ± 50.7 vs. 168.6 ± 30.3, P  
ISSN:0301-486X
1573-0832
DOI:10.1007/s11046-020-00507-z