MALDI-TOF mass spectrometry: an emerging technology for microbial identification and diagnosis

Масс-спектрометрия MALDI-TOF: перспективная технология для идентификации микроорганизмов и диагностики
Manish Kumar, Neelja Singhal, Jugsharan Singh Virdi, Pawan Kumar Kanaujia
2015-08-05

MALDI-TOF mass spectrometryantibiotic resistance detectionmicrobial identificationpeptide mass fingerprintsstrain typing
Currently microorganisms are best identified using 16S rRNA and 18S rRNA gene sequencing. However, in recent years matrix assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) has emerged as a potential tool for microbial identification and diagnosis. During the MALDI-TOF MS process, microbes are identified using either intact cells or cell extracts. The process is rapid, sensitive, and economical in terms of both labor and costs involved. The technology has been readily imbibed by microbiologists who have reported usage of MALDI-TOF MS for a number of purposes like, microbial identification and strain typing, epidemiological studies, detection of biological warfare agents, detection of water- and food-borne pathogens, detection of antibiotic resistance and detection of blood and urinary tract pathogens etc. The limitation of the technology is that identification of new isolates is possible only if the spectral database contains peptide mass fingerprints of the type strains of specific genera/species/subspecies/strains. This review provides an overview of the status and recent applications of mass spectrometry for microbial identification. It also explores the usefulness of this exciting new technology for diagnosis of diseases caused by bacteria, viruses, and fungi.
1
Identification of new isolates is limited by the availability of peptide mass fingerprints for relevant type strains in the spectral database.
2
MALDI-TOF MS has been applied to water- and food-borne pathogens and to pathogens causing bloodstream and urinary tract infections.
3
MALDI-TOF MS has emerged as a rapid, sensitive, and economical alternative or complement to 16S and 18S rRNA gene sequencing for microbial identification.
4
Microbes can be identified by MALDI-TOF MS using either intact cells or cell extracts, enabling practical laboratory implementation.
5
The technology shows potential for diagnosing diseases caused by bacteria, viruses, and fungi.
6
The technology supports microbial identification and strain typing, epidemiological investigations, pathogen detection, biological warfare agent detection, and antibiotic-resistance detection.

MALDI-TOF mass spectrometry applied to microorganisms and microbial pathogens

The capabilities, applications, and limitations of MALDI-TOF MS for microbial identification, strain typing, pathogen detection, and diagnosis of bacterial, viral, and fungal diseases

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2015-08-05
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Manish Kumar
Neelja Singhal
Jugsharan Singh Virdi
Pawan Kumar Kanaujia
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