Evaluation of the identification performance of MALDI-TOF MS Smart MS 5020 from Zhuhai DL Biotech
Blanca Carrasco, Elena Hidalgo, Ángela Iniesta, Juan-Ignacio Alós

TL;DR
This study compares the performance of two MALDI-TOF MS systems for identifying clinical microorganisms and finds both highly accurate.
Contribution
The study provides independent validation of the Smart MS 5020 system as a reliable alternative to the Biotyper Microflex LT.
Findings
Both Smart MS 5020 and Biotyper Microflex LT achieved high identification rates (100% and 98.9%, respectively).
Concordance between the systems was 98.9% at genus level and 97.2% at species level.
Correct species-level identification was 96.9% for Smart MS 5020 and 96.6% for Biotyper Microflex LT.
Abstract
Matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS) is a reliable technique, is rapid and precise in the identification of pathogens, and is essential in clinical microbiology laboratories. The aim of this project is to evaluate the identification performance of the MALDI-TOF MS Smart MS 5020 system (Zhuhai DL Biotech) by comparing the identification results with those of the MALDI-TOF MS Biotyper Microflex LT system (Bruker Daltonics). A total of 612 clinical isolates were analyzed in parallel: 494 routine species and 118 species not commonly isolated in routine practice, previously isolated and frozen in our hospital’s strain collection. This collection included gram-negative bacteria, gram-positive bacteria, anaerobes, and fungi. Concordance at genus and species level identification was evaluated, and 16S rRNA gene sequencing was performed for…
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Taxonomy
TopicsBacterial Identification and Susceptibility Testing · Biosensors and Analytical Detection · Traditional Chinese Medicine Studies
