Quantitative, multiplexed detection of bacterial pathogens: DNA and protein applications of the Luminex LabMAP system

Sherry A Dunbar1, Coe A Vander Zee, Kerry G Oliver

  • 1Luminex Corporation, 12212 Technology Blvd., Austin, TX 78727, USA. sdunbar@luminexcorp.com

Insights

This study developed rapid, multiplexed assays using the Luminex LabMAP system for simultaneous detection of foodborne pathogens like E. coli and Salmonella. The new method offers faster, more comprehensive pathogen identification than traditional techniques.

Area of Science:

  • Food microbiology
  • Molecular diagnostics
  • Immunodiagnostics

Background:

  • Foodborne illnesses are frequently caused by bacterial pathogens including Escherichia coli, Salmonella, Listeria monocytogenes, and Campylobacter jejuni.
  • Conventional detection methods are often laborious, time-consuming, and require multiple tests for comprehensive pathogen screening.

Purpose of the Study:

  • To develop rapid, simultaneous assays for detecting four common foodborne pathogens using the Luminex LabMAP system.
  • To enable detection through either antigen or DNA presence.

Main Methods:

  • Nucleic acid detection involved organism-specific capture probes targeting the 23S ribosomal RNA gene coupled to microspheres, followed by PCR amplification and hybridization.
  • Immunoassays utilized organism-specific antibodies coupled to microspheres for antigen capture-sandwich assays.
  • Both assay types were analyzed using the Luminex(100) system with streptavidin-R-phycoerythrin labeling.

Main Results:

  • Nucleic acid assays achieved specific pathogen identification in 30–40 minutes with a sensitivity of 10^3 to 10^5 genome copies.
  • Immunoassays detected pathogens at concentrations less than or equal to 1000 organisms/ml with no apparent cross-reactivity.
  • The Luminex LabMAP system demonstrated successful simultaneous, sensitive, and specific detection of the target pathogens.

Conclusions:

  • The Luminex LabMAP system provides a rapid, flexible platform for multiplexed pathogen detection.
  • This multiplexing approach offers more timely, economical, and comprehensive information compared to conventional methods.
  • The developed assays are suitable for efficient identification of key foodborne bacterial pathogens.