» Articles » PMID: 34531843

Detection of Colistin Resistance in Using the MALDIxin Test on the Routine MALDI Biotyper Sirius Mass Spectrometer

Overview
Journal Front Microbiol
Specialty Microbiology
Date 2021 Sep 17
PMID 34531843
Citations 13
Authors
Affiliations
Soon will be listed here.
Abstract

Colistin is frequently a last resort treatment for infections caused by multidrug-resistant (MDR) and extensively drug resistant (XDR) strains, and detection of colistin resistance is essential for the management of infected patients. Therefore, we evaluated the recently developed MALDIxin test for the detection of colistin resistance in clinical strains using the routine matrix-assisted laser desorption ionization (MALDI) Biotyper Sirius system. The test is based on the detection by mass spectrometry of modified lipid A by the addition of 4-amino-l-arabinose (l-ara4N) molecules on one or two phosphate groups, in strains resistant to colistin. Overproduction of l-Ara4N molecules is mainly due to the constitutive activation of the histidine kinase (PmrB) or the response regulator (PmrA) following an amino-acid substitution in clinical strains. The performance of the test was determined on a panel of 14 colistin-susceptible and 14 colistin-resistant clinical strains, the reference strain PAO1 and positive control mutants PmrB (V28G), PmrB (D172), PhoQ (D240-247), and ParR (M59I). In comparison with the broth microdilution (BMD) method, all the susceptible strains (=14) and 8/14 colistin-resistant strains were detected in less than 1h, directly on whole bacteria. The remaining resistant strains (=6) were all detected after a short pre-exposure (4h) to colistin before sample preparation. Validation of the method on a larger panel of strains will be the next step before its use in diagnostics laboratories. Our data showed that the MALDIxin test offers rapid and efficient detection of colistin resistant and is thus a valuable diagnostics tool to control the spread of these emerging resistant strains.

Citing Articles

Antimicrobial peptide glatiramer acetate targets Pseudomonas aeruginosa lipopolysaccharides to breach membranes without altering lipopolysaccharide modification.

Murphy R, Pizzato J, Cuthbertson L, Sabnis A, Edwards A, Nolan L NPJ Antimicrob Resist. 2025; 2(1):4.

PMID: 39843948 PMC: 11702655. DOI: 10.1038/s44259-024-00022-x.


Multidrug Resistant in Clinical Settings: A Review of Resistance Mechanisms and Treatment Strategies.

Schwartz B, Klamer K, Zimmerman J, Kale-Pradhan P, Bhargava A Pathogens. 2024; 13(11).

PMID: 39599528 PMC: 11597786. DOI: 10.3390/pathogens13110975.


A novel PhoPQ-potentiated mechanism of colistin resistance impairs membrane integrity in .

Hsieh Y, OKeefe I, Sun W, Wang Z, Yang H, Vu L bioRxiv. 2024; .

PMID: 39464160 PMC: 11507728. DOI: 10.1101/2024.10.15.618514.


Investigating the resistome of haemolytic bacteria in Arctic soils.

Mogrovejo-Arias D, Hay M, Edwards A, Mitchell A, Steinmann J, Brill F Environ Microbiol Rep. 2024; 16(5):e70028.

PMID: 39440916 PMC: 11497493. DOI: 10.1111/1758-2229.70028.


Antimicrobial resistance genes harbored in invasive complex isolated from Korean children during the pre-COVID-19 pandemic periods, 2015-2020.

Kang H, Kim K, Kim G, Lee D, Kim Y, Choi E Front Cell Infect Microbiol. 2024; 14:1410997.

PMID: 39027135 PMC: 11254764. DOI: 10.3389/fcimb.2024.1410997.


References
1.
Dortet L, Potron A, Bonnin R, Plesiat P, Naas T, Filloux A . Rapid detection of colistin resistance in Acinetobacter baumannii using MALDI-TOF-based lipidomics on intact bacteria. Sci Rep. 2018; 8(1):16910. PMC: 6237936. DOI: 10.1038/s41598-018-35041-y. View

2.
Moskowitz S, Ernst R, Miller S . PmrAB, a two-component regulatory system of Pseudomonas aeruginosa that modulates resistance to cationic antimicrobial peptides and addition of aminoarabinose to lipid A. J Bacteriol. 2004; 186(2):575-9. PMC: 305751. DOI: 10.1128/JB.186.2.575-579.2004. View

3.
Sorensen M, Chandler C, Gardner F, Ramadan S, Khot P, Leung L . Rapid microbial identification and colistin resistance detection via MALDI-TOF MS using a novel on-target extraction of membrane lipids. Sci Rep. 2020; 10(1):21536. PMC: 7725828. DOI: 10.1038/s41598-020-78401-3. View

4.
Dortet L, Bonnin R, Pennisi I, Gauthier L, Jousset A, Dabos L . Rapid detection and discrimination of chromosome- and MCR-plasmid-mediated resistance to polymyxins by MALDI-TOF MS in Escherichia coli: the MALDIxin test. J Antimicrob Chemother. 2018; 73(12):3359-3367. DOI: 10.1093/jac/dky330. View

5.
Sader H, Huband M, Castanheira M, Flamm R . Pseudomonas aeruginosa Antimicrobial Susceptibility Results from Four Years (2012 to 2015) of the International Network for Optimal Resistance Monitoring Program in the United States. Antimicrob Agents Chemother. 2017; 61(3). PMC: 5328569. DOI: 10.1128/AAC.02252-16. View