Construction and operation of a multiplexed microfiltration device to facilitate rapid pathogen detection

Jessica Zuponcic1,2, Casey Bomrad1,2, Seockmo Ku2

  • 1Department of Agricultural and Biological Engineering, Purdue University, West Lafayette, Indiana.

Biotechnology Progress
|August 3, 2019
PubMed

Insights

A new multiplexed system for pathogen detection significantly increases sample capacity and simplifies operation. This rapid method achieves results in under 8 hours, enhancing food safety and consumer protection.

Area of Science:

  • Food safety
  • Microbiology
  • Analytical chemistry

Background:

  • Millions affected by foodborne pathogens annually.
  • Current detection methods require lengthy enrichment (up to 24 hours).
  • Rapid, sensitive pathogen detection is crucial for consumer protection.

Purpose of the Study:

  • To describe a novel four-filter module multiplexed system for pathogen concentration and detection.
  • To evaluate the operational characteristics and benefits of the enhanced system.
  • To improve upon existing continuous cell concentration device (C3D) technology.

Main Methods:

  • Design, materials, construction, and layout of a four-channel multiplexed C3D.
  • Utilized microfiltration for concentrating dilute pathogen levels.
  • Evaluated flow rate variability and reproducibility across four channels.

Main Results:

  • Achieved 2x greater sample capacity compared to a duplex system.
  • Maintained a time to result of less than 8 hours (sample prep to detection).
  • Demonstrated flow rate consistency within ±3% across channels, enabling concurrent processing.

Conclusions:

  • The four-module multiplexed C3D offers enhanced sample capacity and simpler operation.
  • The system's compact footprint allows for in-biosafety cabinet use.
  • Reproducible flow rates ensure efficient and reliable concurrent sample processing for rapid pathogen detection.

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