Issue 2, 2013

A novel colorimetric biosensor for monitoring and detecting acute toxicity in water

Abstract

This work presents a new colorimetric microorganism biosensor for monitoring and detecting acute toxicity in water, where prussian blue (PB) is used as the colorimetric indicator and E. coli as the model bacterial. In this biosensor, the electron mediator, ferricyanide, accepts electrons from E. coli during respiration to produce ferrocyanide, which subsequently reacts with ferric ions to yield PB, a famous material with a blue color. Since toxicants can inhibit the respiratory activity of E. coli and then reduce the ferrocyanide and consequent PB production, toxicity can be easily detected by measuring the decrease in the production of PB induced by toxicants. Three important toxicants, 3,5-dichlorophenol (DCP), As3+, Cr6+ are tested and the detection limits are 3.2, 25, and 3.2 ppm, respectively. Moreover, we could identify the yellow green to dark green color change by naked eye even at concentrations as low as 12.5 ppm for both DCP and Cr6+. Subsequently, the acute toxicities of groundwater and south lake water are successfully determined by this sensor. This biosensor is rapid, sensitive and cost-effective, and can thus be regarded as a promising biosensor for giving an early warning of acute water toxicity.

Graphical abstract: A novel colorimetric biosensor for monitoring and detecting acute toxicity in water

Supplementary files

Article information

Article type
Paper
Submitted
20 Aug 2012
Accepted
01 Nov 2012
First published
01 Nov 2012

Analyst, 2013,138, 702-707

A novel colorimetric biosensor for monitoring and detecting acute toxicity in water

J. Zhai, D. Yong, J. Li and S. Dong, Analyst, 2013, 138, 702 DOI: 10.1039/C2AN36160D

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