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BIOSENSORS

Carbamate Insecticide Sensing Based on Acetylcholinesterase/Prussian Blue-Multi-Walled Carbon Nanotubes/Screen-Printed Electrodes

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Pages 803-817 | Received 09 Aug 2012, Accepted 13 Sep 2012, Published online: 01 Mar 2013

REFERENCES

  • Arduini , F. , F. Ricci , C. S. Tuta , D. Moscone , A. Amine , and G. Palleschi . 2006 . Detection of carbamic and organophosphorous pesticides in water samples using a cholinesterase biosensor based on Prussian Blue-modified screen-printed electrode . Anal. Chim. Acta 580 : 155 – 162 .
  • Bian , Y. , C. Li , and H. Li . 2010 . para-Sulfonatocalix [6] arene-modified silver nanoparticles electrodeposited on glassy carbon electrode: Preparation and electrochemical sensing of methyl parathion . Talanta 81 : 1028 – 1033 .
  • Chauhan , N. , J. Narang , and C. Pundir . 2011 . Immobilization of rat brain acetylcholinesterase on porous gold-nanoparticle-CaCO3 hybrid material modified Au electrode for detection of organophosphorous insecticides . Int. J. Biol. Macromol. 49 : 923 – 929 .
  • Crespo-Corral , E. , M. Santos-Delgado , L. Ma Polo-Díez , and J. Sanz-Perucha . 2006 . Reassessment of the methyl derivatization reaction of carbamates with sodium hydride/dimethyl sulfoxide/methyl iodide for their determination by gas chromatography . J. Chromatogr. A 1132 : 241 – 247 .
  • Du , D. , M. Wang , J. Cai , and A. Zhang . 2010 . Sensitive acetylcholinesterase biosensor based on assembly of β-cyclodextrins onto multiwall carbon nanotubes for detection of organophosphates pesticide . Sens. Actuat. B 146 : 337 – 341 .
  • Du , D. , M. Wang , Y. Qin , and Y. Lin . 2010 . One-step electrochemical deposition of Prussian Blue–multiwalled carbon nanotube nanocomposite thin-film: Preparation, characterization and evaluation for H2O2 sensing . J. Mater. Chem. 20 : 1532 – 1537 .
  • Ellis , D. , M. Eckhoff , and V. Neff . 1981 . Electrochromism in the mixed-valence hexacyanides. 1. Voltammetric and spectral studies of the oxidation and reduction of thin films of Prussian blue . J. Phys. Chem. 85 : 1225 – 1231 .
  • Garcia-Jareno , J. , J. Navarro-Laboulais , and F. Vicente . 1996 . Electrochemical study of Nafion membranes/Prussian blue films on ITO electrodes . Electrochim. Acta 41 : 2675 – 2682 .
  • Hou , W. , and E. Wang . 1991 . Liquid chromatography with electrocatalytic detection of cysteine, N-acetylcysteine and glutathione by a prussian blue film-modified electrode . J. Electroanal. Chem 316 : 155 – 163 .
  • Itaya , K. , H. Akahoshi , and S. Toshima . 1982 . Electrochemistry of Prussian blue modified electrodes: an electrochemical preparation method . J. Electrochem. Soc. 129 : 1498 – 1500 .
  • Kang , T. F. , F. Wang , L. P. Lu , Y. Zhang , and T. S. Liu . 2010 . Methyl parathion sensors based on gold nanoparticles and Nafion film modified glassy carbon electrodes . Sens. Actuat. B 145 : 104 – 109 .
  • Lachenmeier , D. W. , U. Nerlich , and T. Kuballa . 2006 . Automated determination of ethyl carbamate in stone-fruit spirits using headspace solid-phase microextraction and gas chromatography–tandem mass spectrometry . J. Chromatogr. A 1108 : 116 – 120 .
  • Li , Z. , J. Chen , W. Li , K. Chen , L. Nie , and S. Yao . 2007 . Improved electrochemical properties of prussian blue by multi-walled carbon nanotubes . J. Electroanal. Chem. 603 : 59 – 66 .
  • Madrera , R. R. , and B. S. Valles . 2009 . Determination of ethyl carbamate in cider spirits by HPLC-FLD . Food Control 20 : 139 – 143 .
  • Musameh , M. M. , Y. Gao , M. Hickey , and I. L. Kyratzis . 2012 . Application of Carbon Nanotubes in the Extraction and Electrochemical Detection of Organophosphate Pesticides: A Review . Anal. Lett. 45 : 783 – 803 .
  • Neff , V. D. 1978 . Electrochemical oxidation and reduction of thin films of Prussian blue . J. Electrochem. Soc. 125 : 886 – 887 .
  • O'Halloran , M. P. , M. Pravda , and G. G. Guilbault . 2001 . Prussian Blue bulk modified screen-printed electrodes for H2O2 detection and for biosensors . Talanta 55 : 605 – 611 .
  • Qu , Y. , Q. Sun , F. Xiao , G. Shi , and L. Jin . 2010 . Layer-by-Layer self-assembled acetylcholinesterase/PAMAM-Au on CNTs modified electrode for sensing pesticides . Bioelectrochemistry 77 : 139 – 144 .
  • Ricci , F. , A. Amine , G. Palleschi , and D. Moscone . 2003. Prussian Blue based screen printed biosensors with improved characteristics of long-term lifetime and pH stability. Biosens. Bioelectron. 18: 165–174.
  • Ricci , F. , and G. Palleschi . 2005 . Sensor and biosensor preparation, optimisation and applications of Prussian Blue modified electrodes . Biosens. Bioelectron. 21 : 389 – 407 .
  • Rickwood , C. J. , and T. S. Galloway . 2004 . Acetylcholinesterase inhibition as a biomarker of adverse effect: A study of Mytilusedulis exposed to the priority pollutant chlorfenvinphos . Aquat. Toxicol . 67 : 45 – 56 .
  • Roy , K. K. , A. Dixit , and A. K. Saxena . 2008 . An investigation of structurally diverse carbamates for acetylcholinesterase (AChE) inhibition using 3D-QSAR analysis . J. Mol. Graphics Modell. 27 : 197 – 208 .
  • Shim , J. H. , J. S. Lee , G. S. Cha , and H. Nam . 2010 . Electroanalytical applications based on carbon nanotube/Prussian blue screen-printable composite . Bull. Korean Chem. Soc. 31 : 1583 – 1588 .
  • Silva Nunes , G. , G. Jeanty , and J. L. Marty . 2004 . Enzyme immobilization procedures on screen-printed electrodes used for the detection of anticholinesterase pesticides: Comparative study . Anal. Chim. Acta 523 : 107 – 115 .
  • Smulders , C. J. G. M. , T. J. H. Bueters , R. G. D. M. Van Kleef , and H. P. M. Vijverberg . 2003 . Selective effects of carbamate pesticides on rat neuronal nicotinic acetylcholine receptors and rat brain acetylcholinesterase . Toxicol. Appl. Pharm 193 : 139 – 146 .
  • Song , Y. , M. Zhang , L. Wang , L. Wan , X. Xiao , S. Ye , and J. Wang . 2011 . A novel biosensor based on acetylecholinesterase/prussian blue-chitosan modified electrode for detection of carbaryl pesticides . Electrochim. Acta 56 : 7267 – 7271 .
  • Wang , K. , Q. Liu , L. Dai , J. Yan , C. Ju , B. Qiu , and X. Wu . 2011 . A highly sensitive and rapid organophosphate biosensor based on enhancement of CdS-decorated graphene nanocomposite . Anal. Chim. Acta 695 : 84 – 88 .
  • Zejli , H. , J. L. Hidalgo-Hidalgo de Cisneros , I. Naranjo-Rodriguez , B. Liu , K. R. Temsamani , and J. L. Marty . 2008 . Alumina sol–gel/sonogel-carbon electrode based on acetylcholinesterase for detection of organophosphorus pesticides . Talanta 77 : 217 – 221 .

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