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2010 | OriginalPaper | Buchkapitel

Electrochemical Cell-Based Sensors

verfasst von : Eliora Z. Ron, Judith Rishpon

Erschienen in: Whole Cell Sensing Systems I

Verlag: Springer Berlin Heidelberg

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Abstract

One of the recently developed monitoring technologies involves the use of whole cell biosensors. Such biosensors can be constructed to detect expression of genes of interest and the effect of the environment on this expression. These biosensors are essential for monitoring environmental stress, such as general toxicity or specific toxicity caused by pollutants. Currently, a large spectrum of microbial biosensors have been developed that enable the monitoring of gene expression by measuring light, fluorescence, color, or electric current. The electrochemical monitoring is of special interest for in situ measurements as it can be performed using simple, compact, and mobile equipment and is easily adaptable for online measurements. Here we survey the potential application of electrochemical biosensors with special focus on monitoring environmental pollution.

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Literatur
1.
Zurück zum Zitat Biran I, Klimentiy L, Hengge-Aronis R, Ron EZ, Rishpon J (1999) On-line monitoring of gene expression. Microbiology 145:2129–2133CrossRef Biran I, Klimentiy L, Hengge-Aronis R, Ron EZ, Rishpon J (1999) On-line monitoring of gene expression. Microbiology 145:2129–2133CrossRef
2.
Zurück zum Zitat Popovtzer R, Neufeld T, Biran D, Ron EZ, Rishpon J, Shacham-Diamand Y (2005) Novel integrated electrochemical nano-biochip for toxicity detection in water. Nano Lett 5:1023–1027CrossRef Popovtzer R, Neufeld T, Biran D, Ron EZ, Rishpon J, Shacham-Diamand Y (2005) Novel integrated electrochemical nano-biochip for toxicity detection in water. Nano Lett 5:1023–1027CrossRef
3.
Zurück zum Zitat Mittelmann AS, Ron EZ, Rishpon J (2002) Amperometric quantification of total coliforms and specific detection of Echerichia coli. Anal Chem 74:903–907CrossRef Mittelmann AS, Ron EZ, Rishpon J (2002) Amperometric quantification of total coliforms and specific detection of Echerichia coli. Anal Chem 74:903–907CrossRef
4.
Zurück zum Zitat Neufeld T, Schwartz-Mittelmann A, Biran D, Ron EZ, Rishpon J (2003) Combined phage typing and amperometric detection of released enzymatic activity for the specific identification and quantification of bacteria. Anal Chem 75:580–585 Neufeld T, Schwartz-Mittelmann A, Biran D, Ron EZ, Rishpon J (2003) Combined phage typing and amperometric detection of released enzymatic activity for the specific identification and quantification of bacteria. Anal Chem 75:580–585
5.
Zurück zum Zitat Biran I, Babai R, Levcov K, Rishpon J, Ron EZ (2000) Online and in situ monitoring of environmental pollutants: electrochemical biosensing of cadmium. Environ Microbiol 2:285–290CrossRef Biran I, Babai R, Levcov K, Rishpon J, Ron EZ (2000) Online and in situ monitoring of environmental pollutants: electrochemical biosensing of cadmium. Environ Microbiol 2:285–290CrossRef
6.
Zurück zum Zitat Paitan Y, Biran D, Biran I, Shechter N, Babai R, Rishpon J, Ron EZ (2003) On-line and in situ biosensors for monitoring environmental pollution. Biotechnol Adv 22:27–33CrossRef Paitan Y, Biran D, Biran I, Shechter N, Babai R, Rishpon J, Ron EZ (2003) On-line and in situ biosensors for monitoring environmental pollution. Biotechnol Adv 22:27–33CrossRef
7.
Zurück zum Zitat Paitan Y, Biran I, Shechter N, Biran D, Rishpon J, Ron EZ (2004) Monitoring aromatic hydrocarbons by whole cell electrochemical biosensors. Anal Biochem 335:175–183CrossRef Paitan Y, Biran I, Shechter N, Biran D, Rishpon J, Ron EZ (2004) Monitoring aromatic hydrocarbons by whole cell electrochemical biosensors. Anal Biochem 335:175–183CrossRef
8.
Zurück zum Zitat Abd-El-Haleem D, Zaki S, Abulhamd A, Elbery H, Abu-Elreesh G (2006) Acinetobacter bioreporter assessing heavy metals toxicity. J Basic Microbiol 46:339–347CrossRef Abd-El-Haleem D, Zaki S, Abulhamd A, Elbery H, Abu-Elreesh G (2006) Acinetobacter bioreporter assessing heavy metals toxicity. J Basic Microbiol 46:339–347CrossRef
9.
Zurück zum Zitat Bontidean I, Mortari A, Leth S, Brown NL, Karlson U, Larsen MM, Vangronsveld J, Corbisier P, Csoregi E (2004) Biosensors for detection of mercury in contaminated soils. Environ Pollut 131:255–262CrossRef Bontidean I, Mortari A, Leth S, Brown NL, Karlson U, Larsen MM, Vangronsveld J, Corbisier P, Csoregi E (2004) Biosensors for detection of mercury in contaminated soils. Environ Pollut 131:255–262CrossRef
10.
Zurück zum Zitat Brandt KK, Holm PE, Nybroe O (2006) Bioavailability and toxicity of soil particle-associated copper as determined by two bioluminescent Pseudomonas fluorescens biosensor strains. Environ Toxicol Chem 25:1738–1741CrossRef Brandt KK, Holm PE, Nybroe O (2006) Bioavailability and toxicity of soil particle-associated copper as determined by two bioluminescent Pseudomonas fluorescens biosensor strains. Environ Toxicol Chem 25:1738–1741CrossRef
11.
Zurück zum Zitat Chouteau C, Dzyadevych S, Durrieu C, Chovelon JM (2005) A bi-enzymatic whole cell conductometric biosensor for heavy metal ions and pesticides detection in water samples. Biosens Bioelectron 21:273–281CrossRef Chouteau C, Dzyadevych S, Durrieu C, Chovelon JM (2005) A bi-enzymatic whole cell conductometric biosensor for heavy metal ions and pesticides detection in water samples. Biosens Bioelectron 21:273–281CrossRef
12.
Zurück zum Zitat Fujimoto H, Wakabayashi M, Yamashiro H, Maeda I, Isoda K, Kondoh M, Kawase M, Miyasaka H, Yagi K (2006) Whole-cell arsenite biosensor using photosynthetic bacterium Rhodovumul sulfidophilum: Rhodovumul sulfidophilum as an arsenite biosensor. Appl Microbiol Biotechnol 73:332–338CrossRef Fujimoto H, Wakabayashi M, Yamashiro H, Maeda I, Isoda K, Kondoh M, Kawase M, Miyasaka H, Yagi K (2006) Whole-cell arsenite biosensor using photosynthetic bacterium Rhodovumul sulfidophilum: Rhodovumul sulfidophilum as an arsenite biosensor. Appl Microbiol Biotechnol 73:332–338CrossRef
13.
Zurück zum Zitat Hakkila K, Green T, Leskinen P, Ivask A, Marks R, Virta M (2004) Detection of bioavailable heavy metals in EILATox-Oregon samples using whole-cell luminescent bacterial sensors in suspension or immobilized onto fibre-optic tips. J Appl Toxicol 24:333–342CrossRef Hakkila K, Green T, Leskinen P, Ivask A, Marks R, Virta M (2004) Detection of bioavailable heavy metals in EILATox-Oregon samples using whole-cell luminescent bacterial sensors in suspension or immobilized onto fibre-optic tips. J Appl Toxicol 24:333–342CrossRef
14.
Zurück zum Zitat Shetty RS, Deo SK, Shah P, Sun Y, Rosen BP, Daunert S (2003) Luminescence-based whole-cell-sensing systems for cadmium and lead using genetically engineered bacteria. Anal Bioanal Chem 376:11–17 Shetty RS, Deo SK, Shah P, Sun Y, Rosen BP, Daunert S (2003) Luminescence-based whole-cell-sensing systems for cadmium and lead using genetically engineered bacteria. Anal Bioanal Chem 376:11–17
15.
Zurück zum Zitat Shetty RS, Deo SK, Liu Y, Daunert S (2004) Fluorescence-based sensing system for copper using genetically engineered living yeast cells. Biotechnol Bioeng 88:664–670CrossRef Shetty RS, Deo SK, Liu Y, Daunert S (2004) Fluorescence-based sensing system for copper using genetically engineered living yeast cells. Biotechnol Bioeng 88:664–670CrossRef
16.
Zurück zum Zitat Verma N, Singh M (2005) Biosensors for heavy metals. Biometals 18:121–129CrossRef Verma N, Singh M (2005) Biosensors for heavy metals. Biometals 18:121–129CrossRef
17.
Zurück zum Zitat Campbell DW, Muller C, Reardon KF (2006) Development of a fiber optic enzymatic biosensor for 1, 2-dichloroethane. Biotechnol Lett 28:883–887CrossRef Campbell DW, Muller C, Reardon KF (2006) Development of a fiber optic enzymatic biosensor for 1, 2-dichloroethane. Biotechnol Lett 28:883–887CrossRef
18.
Zurück zum Zitat Leedjarv A, Ivask A, Virta M, Kahru A (2006) Analysis of bioavailable phenols from natural samples by recombinant luminescent bacterial sensors. Chemosphere 64:1910–1919CrossRef Leedjarv A, Ivask A, Virta M, Kahru A (2006) Analysis of bioavailable phenols from natural samples by recombinant luminescent bacterial sensors. Chemosphere 64:1910–1919CrossRef
19.
Zurück zum Zitat Phoenix P, Keane A, Patel A, Bergeron H, Ghoshal S, Lau PC (2003) Characterization of a new solvent-responsive gene locus in Pseudomonas putida F1 and its functionalization as a versatile biosensor. Environ Microbiol 5:1309–1327CrossRef Phoenix P, Keane A, Patel A, Bergeron H, Ghoshal S, Lau PC (2003) Characterization of a new solvent-responsive gene locus in Pseudomonas putida F1 and its functionalization as a versatile biosensor. Environ Microbiol 5:1309–1327CrossRef
20.
Zurück zum Zitat Tizzard AC, Bergsma JH, Lloyd-Jones G (2006) A resazurin-based biosensor for organic pollutants. Biosens Bioelectron 22:759–763CrossRef Tizzard AC, Bergsma JH, Lloyd-Jones G (2006) A resazurin-based biosensor for organic pollutants. Biosens Bioelectron 22:759–763CrossRef
21.
Zurück zum Zitat Xu Z, Mulchandani A, Chen W (2003) Detection of benzene, toluene, ethyl benzene, and xylenes (BTEX) using toluene dioxygenase-peroxidase coupling reactions. Biotechnol Prog 19:1812–1815CrossRef Xu Z, Mulchandani A, Chen W (2003) Detection of benzene, toluene, ethyl benzene, and xylenes (BTEX) using toluene dioxygenase-peroxidase coupling reactions. Biotechnol Prog 19:1812–1815CrossRef
22.
Zurück zum Zitat Farre M, Goncalves C, Lacorte S, Barcelo D, Alpendurada MF (2002) Pesticide toxicity assessment using an electrochemical biosensor with Pseudomonas putida and a bioluminescence inhibition assay with Vibrio fischeri. Anal Bioanal Chem 373:696–703CrossRef Farre M, Goncalves C, Lacorte S, Barcelo D, Alpendurada MF (2002) Pesticide toxicity assessment using an electrochemical biosensor with Pseudomonas putida and a bioluminescence inhibition assay with Vibrio fischeri. Anal Bioanal Chem 373:696–703CrossRef
23.
Zurück zum Zitat Huang WE, Wang H, Zheng H, Huang L, Singer AC, Thompson I, Whiteley AS (2005) Chromosomally located gene fusions constructed in Acinetobacter sp. ADP1 for the detection of salicylate. Environ Microbiol 7:1339–1348CrossRef Huang WE, Wang H, Zheng H, Huang L, Singer AC, Thompson I, Whiteley AS (2005) Chromosomally located gene fusions constructed in Acinetobacter sp. ADP1 for the detection of salicylate. Environ Microbiol 7:1339–1348CrossRef
24.
Zurück zum Zitat Lei Y, Mulchandani P, Chen W, Wang J, Mulchandani A (2004) Whole cell-enzyme hybrid amperometric biosensor for direct determination of organophosphorus nerve agents with p-nitrophenyl substituent. Biotechnol Bioeng 85:706–713CrossRef Lei Y, Mulchandani P, Chen W, Wang J, Mulchandani A (2004) Whole cell-enzyme hybrid amperometric biosensor for direct determination of organophosphorus nerve agents with p-nitrophenyl substituent. Biotechnol Bioeng 85:706–713CrossRef
25.
Zurück zum Zitat Lei Y, Mulchandani P, Wang J, Chen W, Mulchandani A (2005) Highly sensitive and selective amperometric microbial biosensor for direct determination of p-nitrophenyl-substituted organophosphate nerve agents. Environ Sci Technol 39:8853–8857CrossRef Lei Y, Mulchandani P, Wang J, Chen W, Mulchandani A (2005) Highly sensitive and selective amperometric microbial biosensor for direct determination of p-nitrophenyl-substituted organophosphate nerve agents. Environ Sci Technol 39:8853–8857CrossRef
26.
Zurück zum Zitat Matsui N, Kaya T, Nagamine K, Yasukawa T, Shiku H, Matsue T (2006) Electrochemical mutagen screening using microbial chip. Biosens Bioelectron 21:1202–1209CrossRef Matsui N, Kaya T, Nagamine K, Yasukawa T, Shiku H, Matsue T (2006) Electrochemical mutagen screening using microbial chip. Biosens Bioelectron 21:1202–1209CrossRef
27.
Zurück zum Zitat Norman A, Hansen LH, Sorensen SJ (2006) A flow cytometry-optimized assay using an SOS-green fluorescent protein (SOS-GFP) whole-cell biosensor for the detection of genotoxins in complex environments. Mutat Res 603:164–172CrossRef Norman A, Hansen LH, Sorensen SJ (2006) A flow cytometry-optimized assay using an SOS-green fluorescent protein (SOS-GFP) whole-cell biosensor for the detection of genotoxins in complex environments. Mutat Res 603:164–172CrossRef
28.
Zurück zum Zitat Belkin S, Smulski DR, Vollmer AC, Van Dyk TK, LaRossa RA (1996) Oxidative stress detection with Escherichia coli harboring a katG'::lux fusion. Appl Environ Microbiol 62:2252–2256 Belkin S, Smulski DR, Vollmer AC, Van Dyk TK, LaRossa RA (1996) Oxidative stress detection with Escherichia coli harboring a katG'::lux fusion. Appl Environ Microbiol 62:2252–2256
29.
Zurück zum Zitat Choi JW, Park KW, Lee DB, Lee W, Lee WH (2005) Cell immobilization using self-assembled synthetic oligopeptide and its application to biological toxicity detection using surface plasmon resonance. Biosens Bioelectron 20:2300–2305CrossRef Choi JW, Park KW, Lee DB, Lee W, Lee WH (2005) Cell immobilization using self-assembled synthetic oligopeptide and its application to biological toxicity detection using surface plasmon resonance. Biosens Bioelectron 20:2300–2305CrossRef
30.
Zurück zum Zitat Neufeld T, Biran D, Popovtzer R, Erez T, Ron EZ, Rishpon J (2006) Genetically engineered pfabA pfabR bacteria: an electrochemical whole cell biosensor for detection of water toxicity. Anal Chem 78:4952–4956CrossRef Neufeld T, Biran D, Popovtzer R, Erez T, Ron EZ, Rishpon J (2006) Genetically engineered pfabA pfabR bacteria: an electrochemical whole cell biosensor for detection of water toxicity. Anal Chem 78:4952–4956CrossRef
31.
Zurück zum Zitat Sorensen SJ, Burmolle M, Hansen LH (2006) Making bio-sense of toxicity: new developments in whole-cell biosensors. Curr Opin Biotechnol 17:11–16CrossRef Sorensen SJ, Burmolle M, Hansen LH (2006) Making bio-sense of toxicity: new developments in whole-cell biosensors. Curr Opin Biotechnol 17:11–16CrossRef
32.
Zurück zum Zitat Sørensen J, Nicolaisen MH, Ron E, Simonet P (2009) Molecular tools in rhizosphere microbiology – from single-cell to whole-community analysis. Plant and Soil 321:483–513CrossRef Sørensen J, Nicolaisen MH, Ron E, Simonet P (2009) Molecular tools in rhizosphere microbiology – from single-cell to whole-community analysis. Plant and Soil 321:483–513CrossRef
33.
Zurück zum Zitat Belkin S (2003) Microbial whole-cell sensing systems of environmental pollutants. Curr Opin Microbiol 6:206–212CrossRef Belkin S (2003) Microbial whole-cell sensing systems of environmental pollutants. Curr Opin Microbiol 6:206–212CrossRef
34.
Zurück zum Zitat Daunert S, Barrett G, Feliciano JS, Shetty RS, Shrestha S, Smith-Spencer W (2000) Genetically engineered whole-cell sensing systems: coupling biological recognition with reporter genes. Chem Rev 100:2705–2738CrossRef Daunert S, Barrett G, Feliciano JS, Shetty RS, Shrestha S, Smith-Spencer W (2000) Genetically engineered whole-cell sensing systems: coupling biological recognition with reporter genes. Chem Rev 100:2705–2738CrossRef
35.
Zurück zum Zitat Scott DL, Ramanathan S, Shi W, Rosen BP, Daunert S (1997) Genetically engineered bacteria: electrochemical sensing systems for antimonite and arsenite. Anal Chem 69:16–20CrossRef Scott DL, Ramanathan S, Shi W, Rosen BP, Daunert S (1997) Genetically engineered bacteria: electrochemical sensing systems for antimonite and arsenite. Anal Chem 69:16–20CrossRef
36.
Zurück zum Zitat Ron EZ (2007) Biosensing environmental pollution. Curr Opin Biotechnol 18:252–256CrossRef Ron EZ (2007) Biosensing environmental pollution. Curr Opin Biotechnol 18:252–256CrossRef
37.
Zurück zum Zitat Babai R, Ron EZ (1998) An Escherichia coli gene responsive to heavy metals. FEMS Microbiol Lett 167:107–111 Babai R, Ron EZ (1998) An Escherichia coli gene responsive to heavy metals. FEMS Microbiol Lett 167:107–111
Metadaten
Titel
Electrochemical Cell-Based Sensors
verfasst von
Eliora Z. Ron
Judith Rishpon
Copyright-Jahr
2010
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/10_2009_17

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