4.8 Article

Rapid detection of single E. coli bacteria using a graphene-based field-effect transistor device

期刊

BIOSENSORS & BIOELECTRONICS
卷 110, 期 -, 页码 16-22

出版社

ELSEVIER ADVANCED TECHNOLOGY
DOI: 10.1016/j.bios.2018.03.014

关键词

Graphene oxide; Field-effect transistor; E. coli; Biosensor; Bacteria detection

资金

  1. U.S. National Science Foundation (NSF) through an NSF Industry/University Cooperative Research Centre Grand Challenge Grant [IIP-1540032]
  2. MMSD

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Contamination of surface and drinking water due to the presence of Escherichia coli bacteria is a major cause of water-borne disease outbreak. To address unmet challenges for practical pathogen detection in contaminated samples, we report fabrication of thermally reduced graphene oxide-based field-effect transistor (rGO FET) passivated with an ultrathin layer of Al2O3 for real-time detection of E. coli bacteria. The sensor could detect a single E. coli cell within 50 s in a 1 mu L sample volume. The ultrathin layer of Al2O3 acted as a barrier between rGO and potential interferents present in the sample. E. coli specific antibodies anchored on gold nanoparticles acted as probes for selective capture of E. coli. The high density of negative charge on the surface of E. coli cells strongly modulates the concentration of majority charge carriers in the rGO monolayer, thereby allowing real-time monitoring of E. coli concentration in a given sample. With a low detection limit of single cell, the FET sensor had a linear range of 1-100 CFU in 1 mu L volume of sample (i.e., 10(3) to 10(5) CFU/mL). The biosensor with good selectivity and rapid detection was further successfully demonstrated for E. coli sensing in river water. The rGO-based FET sensor provides a low cost and label-free approach, and can be mass produced for detection of a broad spectrum of pathogens in water or other liquid media.

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