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Rapid and robust MALDI-TOF MS techniques for microbial identification: a brief overview of their diverse applications

期刊

JOURNAL OF MICROBIOLOGY
卷 56, 期 4, 页码 209-216

出版社

MICROBIOLOGICAL SOCIETY KOREA
DOI: 10.1007/s12275-018-7457-0

关键词

MALDI-TOF; microbial identification; clinical; environmental; whole-cell typing

资金

  1. KBSI [G38110]
  2. National Research Foundation of Korea (NRF) - Ministry of Science and ICT [2016R1C1B2006863]

向作者/读者索取更多资源

Advances in mass spectrometry have enabled the investigation of various biological systems by directly analyzing diverse sets of biomolecules (i.e., proteins, lipids, and carbohydrates), thus making a significant impact on the life sciences field. Over the past decade, matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) has been widely utilized as a rapid and reliable method for the identification of microorganisms. MALDI-TOF MS has come into widespread use despite its relatively low resolving power (full width at half maximum, FWHM: < 5,000) and its incompatibility with tandem MS analysis, features with which other high-resolution mass spectrometers are equipped. Microbial identification is achieved by searching databases containing mass spectra of peptides and proteins extracted from microorganisms of interest, using scoring algorithms to match analyzed spectra with reference spectra. In this paper, we give a brief overview of the diverse applications of rapid and robust MALDI-TOF MS-based techniques for microbial identification in a variety of fields, such as clinical diagnosis and environmental and food monitoring. We also describe the fundamental principles of MALDI-TOF MS. The general specifications of the two major MS-based microbial identification systems available in the global market (BioTyperA (R) and VITEKA (R) MS Plus) and the distribution of these instruments in Republic of Korea are also discussed. The current review provides an understanding of this emerging microbial identification and classification technology and will help bacteriologists and cell biologists take advantage of this powerful technique.

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