Issue 5, 2008

Enhanced microfiltration devices configured with hydrodynamic trapping and a rain drop bypass filtering architecture for microbial cells detection

Abstract

Ultra-fine (<1 μm) microfilters are required to effectively trap microbial cells. We designed microfilters featuring a rain drop bypass architecture, which significantly reduces the likelihood of clogging at the cost of limited cell loss. The new rain drop bypass architecture configuration has a substantially lower pressure drop and allows a better efficiency in trapping protozoan cells (Cryptosporidium parvum and Giardia lamblia) in comparison to our previous generation of a microfilter device. A modified version displaying sub-micron filter gaps was adapted to trap and detect bacterial cells (Escherichia coli), through a method of cells labeling, which aims to amplify the fluorescence signal emission and therefore the sensitivity of detection.

Graphical abstract: Enhanced microfiltration devices configured with hydrodynamic trapping and a rain drop bypass filtering architecture for microbial cells detection

Article information

Article type
Technical Note
Submitted
03 Jan 2008
Accepted
13 Mar 2008
First published
01 Apr 2008

Lab Chip, 2008,8, 830-833

Enhanced microfiltration devices configured with hydrodynamic trapping and a rain drop bypass filtering architecture for microbial cells detection

C. Lay, C. Y. Teo, L. Zhu, X. L. Peh, H. M. Ji, B. Chew, R. Murthy, H. H. Feng and W. Liu, Lab Chip, 2008, 8, 830 DOI: 10.1039/B800015H

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