4.5 Article

Immunomagnetic separation for MEMS-based biosensor of water borne pathogens detection

Journal

MODERN PHYSICS LETTERS B
Volume 31, Issue 19-21, Pages -

Publisher

WORLD SCIENTIFIC PUBL CO PTE LTD
DOI: 10.1142/S021798491740084X

Keywords

Waterborne pathogens; immunomagnetic separation; magnetic nanoparticles; MEMS-based biosensor

Funding

  1. Changzhou Sci Tech Program [CE20155054]
  2. Jiangsu Graduate Research and Innovation Program [CXLX12_0662]
  3. National Natural Science Foundation of China [61673195]
  4. Top-notch Academic Programs Project of Jiangsu Higher Education Institutions (TAPP) [PPZY2015B129]
  5. National Undergraduate Innovative Practice Project [201611055005]

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Rapid isolation and detection of special pathogens present in environmental drinking water is critical for water quality monitoring. Numerical analysis and experimental investigations on immunomagnetic capture and isolation of waterborne pathogens with magnetic nanoparticles (MNPs) in microfluidic channel are performed. A finite-element COMSOL-based model is established to demonstrate the novel method of on-chip capturing pathogens using MNPs together with periodic pulse magnetic field. Simulation results determine the optimum magnetic pole current and switching frequency for magnetic separation. With the magnetic isolation experiment platform built up, as a pathogen example of Escherichia coli O157:H7, the performance of the method is experimentally verified. Both numerical and experimental results are found to agree reasonably well. Results of these investigations show that the capture efficiency of the immunomagnetic separation method is more than 92%, which could be encouraging for the design and optimization of MEMS-based biosensor of waterborne pathogen detection.

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