Literature DB >> 30599553

Low concentration E. coli O157:H7 bacteria sensing using microfluidic MEMS biosensor.

Shibajyoti Ghosh Dastider1, Amjed Abdullah1, Ibrahem Jasim1, Nuh S Yuksek1, Majed Dweik2, Mahmoud Almasri1.   

Abstract

This paper reports the design, fabrication, and testing of a microfluidic MEMS biosensor for rapid sensing of low concentration Escherichia coli O157:H7. It consists of a specially designed focusing and sensing region, which enables the biosensor to detect low concentration of bacterial cells. The focusing region consists of a ramped vertical electrode pair made of electroplated gold along with tilted thin film finger pairs (45°) embedded inside a microchannel. The focusing region generates positive dielectrophoresis force, which moves the cells towards the edges of the tilted thin film electrode fingers, located at the center of the microchannel. The fluidic drag force then carries the focused cells to the sensing region, where three interdigitated electrode arrays (IDEAs) with 30, 20, and 10 pairs, respectively, are embedded inside the microchannel. This technique resulted in highly concentrated samples in the sensing region. The sensing IDEAs are functionalized with the anti-E. coli antibody for specific sensing of E. coli 0157:H7. As E. coli binds to the antibody, it results in an impedance change, which is measured across a wide frequency range of 100 Hz-10 MHz. The biosensor was fabricated on a glass substrate using the SU8 epoxy resist to form the microchannel, gold electroplating to form the vertical focusing electrode pair, a thin gold film to form the sensing electrode, the finger electrodes, traces and bonding pads, and polydimethylsiloxane to seal the device. The microfluidic impedance biosensor was tested with various low concentration bacterial samples and was able to detect bacterial concentration, as low as 39 CFU/ml with a total sensing time of 2 h.

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Year:  2018        PMID: 30599553     DOI: 10.1063/1.5043424

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  3 in total

1.  Physiochemically Distinct Surface Properties of SU-8 Polymer Modulate Bacterial Cell-Surface Holdfast and Colonization.

Authors:  Silambarasan Anbumani; Aldeliane M da Silva; Andrei Alaferdov; Marcos V Puydinger Dos Santos; Isis G B Carvalho; Mariana de Souza E Silva; Stanislav Moshkalev; Hernandes F Carvalho; Alessandra A de Souza; Monica A Cotta
Journal:  ACS Appl Bio Mater       Date:  2022-09-26

2.  A Portable Magnetic Particle Spectrometer for Future Rapid and Wash-Free Bioassays.

Authors:  Kai Wu; Vinit Kumar Chugh; Arturo di Girolamo; Jinming Liu; Renata Saha; Diqing Su; Venkatramana D Krishna; Abilash Nair; Will Davies; Yongqiang Andrew Wang; Maxim C-J Cheeran; Jian-Ping Wang
Journal:  ACS Appl Mater Interfaces       Date:  2021-02-10       Impact factor: 10.383

Review 3.  Review of Label-Free Monitoring of Bacteria: From Challenging Practical Applications to Basic Research Perspectives.

Authors:  Beatrix Péter; Eniko Farkas; Sandor Kurunczi; Zoltán Szittner; Szilvia Bősze; Jeremy J Ramsden; Inna Szekacs; Robert Horvath
Journal:  Biosensors (Basel)       Date:  2022-03-22
  3 in total

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