4.6 Article

A Technique for Rapid Bacterial-Density Enumeration through Membrane Filtration and Differential Pressure Measurements

Journal

MICROMACHINES
Volume 13, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/mi13081198

Keywords

bacterial enumeration; membrane filtration; pressure differential measurement; hydraulic resistance

Funding

  1. Ministry of Education, Singapore, under its Academic Research Fund Tier 1 [RT04/19(S)]

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This article presents a microfluidic technique for rapid enumeration of bacterial density using a syringe filter. The technique quantifies bacterial density through pressure difference measurement across the membrane. The article demonstrates the accuracy and speed of the method in determining bacterial density through experimental validation.
In this article, we present a microfluidic technique for the rapid enumeration of bacterial density with a syringe filter to trap bacteria and the quantification of the bacterial density through pressure difference measurement across the membrane. First, we established the baseline differential pressure and hydraulic resistance for a filtration membrane by fully wetting the filter with DI water. Subsequently, when bacteria were infused and trapped at the pores of the membrane, the differential pressure and hydraulic resistance also increased. We characterized the infusion time required for the bacterial sample to achieve a normalized hydraulic resistance of 1.5. An equivalent electric-circuit model and calibration data sets from parametric studies were used to determine the general form of a calibration curve for the prediction of the bacterial density of a bacterial sample. As a proof of concept, we demonstrated through blind tests with Escherichia coli that the device is capable of determining the bacterial density of a sample ranging from 7.3 x 10(6) to 2.2 x 10(8) CFU/mL with mean and median accuracies of 87.21% and 91.33%, respectively. The sample-to-result time is 19 min for a sample with lower detection threshold, while for higher-bacterial-density samples the measurement time is further shortened to merely 8 min.

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