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BIOSENSORS

Nitrilotriacetic Acid–Copper(II) Monolayer Deposited on a Gold Electrode for the Immobilization of Histidine Tagged V Domain of Receptor for Advanced Glycation End Products–The Basis of Amyloid–Beta Peptide Sensing

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Pages 1375-1391 | Received 26 Jul 2013, Accepted 14 Nov 2013, Published online: 02 May 2014

REFERENCES

  • Andreescu , S. , V. Magearu , A. Lougarre , D. Fournier , and J. L. Marty . 2001 . Immobilization of enzymes on screen-printed sensors via an histidine tail. Application to the detection of pesticides using modified cholinesterase . Anal. Lett. 34 : 529 – 540 .
  • Balland , V. , C. Hureau , A. M. Cusano , Y. Liu , T. Tron , and B. Limoges . 2008 . Oriented immobilization of a fully active monolayer of histidine-tagged recombinant laccase on modified gold electrodes . Chem.-Eur. J. 14 : 7186 – 7192 .
  • Blanchette , C. D. , N. O. Fischer , M. G. Corzett , G. Bench , and. P. D. Hoeprich . 2010 . Kinetic analysis of his-tagged protein binding to nickel-chelating nanolipoprotein particles . Bioconjugate Chem. 21 : 1321 – 1330 .
  • Blankerspoor , R. , B. Limoges , B. Schollhorn , J. L. Syssa-Magalé , and D. Yazidi . 2005 . Dense monolayers of metal-chelating ligands covalently attached to carbon electrodes electrochemically and their useful application in affinity binding of histidine-tagged proteins . Langmuir 21 : 3362 – 3375 .
  • Brellier , M. , B. Barlaam , Ch. Mioskowski , and R. Baati . 2009 . Insight into the complexation mode of Bis(nitrilotriacetic acid) (NTA) ligands with Ni2+ involved in the labeling of histidine-tagged proteins . Chem. Eur. J. 15 : 12689 – 12701 .
  • Deane , R. , Z. Wu , A. Sagare , J. Davis , S. D. Yan , K. Hamm , et al. 2004 . LPR/amyloid β–peptide interaction mediates differential brain effux of Aβ isoforms . Neuron 43 : 333 – 344 .
  • Debasis , S. , and S. Amitabha . 2011 . Immobilization of bio-macromolecules on self-assembled monolayers: Methods and sensor applications . Chem. Soc. Rev. 40 : 2567 – 2592 .
  • Eckermann , A. L. , D. J. Feld , J. A. Shaw , and T. J. Meade . 2010 . Electrochemistry of redox-active self-assembled . Coord. Chem. Rev. 254 : 1769 – 1802 .
  • Finder , V. H. , I. Vodopivec , R. M. Nitsch , and R. Glockshuber . 2010 . The recombinant amyloid-beta peptide Aβ1–42 aggregates faster and is more neurotoxic than synthetic Aβ1–42 . J. Mol. Biol. 396 : 9 – 18 .
  • Finklea , H. O. 1996 . Electrochemistry of organized monolayers of thiols and related molecules on electrodes . In Electroanalytical Chemistry , Vol. 19 , ed. A. J. Bard and I. Rubinstein . New York , NY : Marcel Dekker .
  • Gaberc-Porekar , V. , and V. Menart . 2011 . Perspectives of immobilized-metal affinity chromatography . J. Biochem. Biophys. Methods 49 : 335 – 360 .
  • Gospodarska , E. , A. Kozak-Kupniewska , G. Goch , and M. Dadlez . 2011 . Binding studies of truncated variants of the Aβ peptide to the V-domain of the RAGE receptor reveal Aβ residues responsible for binding . Biochim. Biophys. Acta 1814 : 592 – 609 .
  • Hainfield , J. F ., W. C. Liu , M. R. Halsey , P. Freimuth , and R. D. Powel . 1999 . Ni-NTA-gold cluster target his-tagged proteins . J. Struc. Biol. 127 : 185 – 198 .
  • Hale , J. E. 2013 . Advantageous uses of mass spectrometry for quantification of proteins . Int. J. Proteomics. ID 219452 , 1 – 6 .
  • Jargiło , A. , I. Grabowska , H. Radecka , M. Sulima , I. Marszałek , A. Wysłouch-Cieszyńska , W. Dehaen , and J. Radecki . 2013. Redox active dipyrromethene Cu(II) monolayer for oriented immobilization of his-tagged RAGE domains-the base of electrochemical biosensor for determination of Aβ16–23′. Electroanalysis 25: 1185–1193.
  • Jarocka , U. , M. Wąsowicz , H. Radecka , T. Malinowski , L. Michalczuk , and J. Radecki . 2011 . Impedimetric immunosensor for detection of plum pox virus in plant extract . Electroanalysis 23 : 2197 – 2204 .
  • Khor , S. M. , G. Liu , C. Fairman , S. G. Iyengar , and J. Gooding . 2011 . The importance of interfacial design for the sensitivity of a label-free electrochemical immuno-biosensor for small organic molecules . Biosens. Bioelectron. 26 : 2038 – 2044 .
  • Kruppa , M. , and B. König . 2006 . Reversible coordinate bonds in molecular recognition . Chem. Rev. 106 : 3520 – 3560 .
  • Leca-Bouvier , B. , and L. J. Blum . 2005 . Biosensors for protein detection: A review . Anal. Lett. 38 : 1491 – 1517 .
  • Lim , K. H. , I.-H. Kim , H. Y. Nam , S. Shin , and S. S. Haah . 2013 . Aptamer-based alternatives to the conventional immobilized metal affinity chromatography for purification of his-tagged proteins . Anal. Lett. 46 ( 3 ): 407 – 415 .
  • Mielecki , M. , J. Wojtasik , M. K. Zborowska , K. Kurzątkowska , K. Grzelak , J. Radecki , and H. Radecka . 2013 . Oriented immobilization of his-tagged kinase RIO1 protein on redox active N-(IDA-like)-Cu(II) monolayer deposited on gold electrode-the base of electrochemical biosensor . Electrochim. Acta 96 : 145 – 154 .
  • Mikuła , E. , M. Sulima , I. Marszałek , A. Wysłouch-Cieszyńska , P. Verwilst , W. Dehaen , J. Radecki , and H. Radecka . 2013 . Oriented immobilization of His-tagged protein on a redox active thiol derivative of DPTA-Cu(II) layer deposited on a gold electrode-the base of electrochemical biosensors . Sensors. 13 : 11586 – 11602 .
  • Ohtani , M. 1999 . Quasi-reversible voltammetric response of electrodes coated with electroactive monolayer films . Electrochem. Commun. 1 : 448 – 492 .
  • Ohtani , M. , S. Kuwabata , and H. Yoneyama . 1997 . Voltammetric response accompanied by inclusion of ion pairs and triple ion formation of electrodes coated with an electroactive monolayer film . Anal. Chem. 69 : 1045 – 1053 .
  • Patent No. P.394798 (Poland) 5 June 2011. Electrochemical biosensor with stable detection layer, gold electrode modification method in order to obtain biosensor, the method of protein immobilization, the method of detection of specific proteins, and application of biosensor for detection of specific proteins.
  • Radecka , H. , J. Radecki , I. Grabowska , and K. Kurzątkowska . 2012 . Electrochemical sensors and biosensors based on self-assembled monolayers: Aplication of nanoparticles for analytical signals amplification . In Functional Nanoparticles for Bioanalysis, Nanomedicine, and Bioelectronic Devices , Volume 1 , ACS Symposium Series, Vol. 1112, Chapter 11, pp. 293–312, American Chemical Society.
  • Rowe , G. K. , and S. E. Creager . 1991 . Redox and ion-pairing thermodynamics in self-assembled monolayers . Langmuir. 7 : 2307 – 2312 .
  • Rowe , G. K. , and S. E. Creager . 1994 . Competitive self-assembly and electrochemistry of some ferrocenyl-n-alkanethiol derivatives on gold . J. Electroanal. Chem. 270 : 203 – 221 .
  • Saraswathyamma , B. , I. Grzybowska , C. Orlewska , J. Radecki , W. Dehaen , K. G. Kumar , and H. Radecka . 2008 . Electroactive dipyrromethene-Cu(II) monolayers deposited onto gold electrodes for voltammetric determination of paracetamol . Electroanalysis 20 : 2317 – 2323 .
  • Smith , P. K. , R. I. Krohn , G. T. Hermanson , A. K. Mallia , F. H. Gartner , M. D. Provenzano , E. K. Fujimoto , N. M. Goeke , B. J. Olson , and D. C. Klenk . 1985 . Measurement of protein using bicinchoninic acid . Anal. Biochem. 150 : 76 – 85 .
  • Sparvero , L. J. , D. Asafu-Adjei , R. Kang , D. Tang , N. Amin , J. Im , et al. 2009 . RAGE (Receptor for Advanced Glycation Endproducts), RAGE ligands, and their role in cancer and inflammation . J. Translation Med. 7 : 1 – 17 .
  • Srikanth , V. , A. Maczurek , T. Phan , M. Steele , B. Westcott , D. Juskiw , and G. Münch . 2011. Advanced glycation endproducts and their receptor RAGE in Alzheimer's disease. Neurobiol. Aging 32: 763–777.
  • Stanyon , H. F. , and J. H. Viles . 2012 . Human serum albumin can regulate amyloid –beta peptide fiber grow in the brain intersititium. Implications for Alzheimer's Disease . J. Biol. Chem. 287 : 28163 – 28168 .
  • Stefanakis , D. , A. Margellou , A. Psarouli , N. Chaniotakis , and D. F. Ghanotakis . 2010 . Immobilization of glucose oxidase and 2-hydroxybiphenyl 3-monooxygenase in mesoporous silica: Characterization Studies and construction of an amperometric. Glucose Biosensor . Anal. Lett. 43 : 2582 – 2597 .
  • Swartz , M. E. , and I. S. Krull . 2012 . Handbook of Analytical Validation . Boca Raton , FL : CRC Press Taylor & Francis Group .
  • Szymańska , I. , Cz. Orlewska , D. Janssen , W. Dehaen , and H. Radecka . 2008 . Dipyrromethene-dodecanethiol self assembled monolayers deposited onto gold electrodes . Electrochim. Acta 53 : 7932 – 7940 .
  • Thomson , N. H. , B. L. Smith , N. Almqvist , L. Schmitt , M. Kaslev , E. T. Kool , and P. K. Hansma . 1999 . Oriented, active escherichia coli RNA polymerase: An atomic force microscoy study . Biophys. J. 76 : 1024 – 1033 .
  • Vestergaard , M. , K. Kerman , and E. Tamiya . 2006 . The study of Alzheimer's disease biomarkers . NanoBiotechnology. 2 : 5 – 16 .
  • Voiciuk , V. , G. Valincius , R. Budvytytė , A. Matijoŝka , I. Matulaitienė , and G. Niaura . 2012 . Surface-enhanced Raman spectroscopy for detection of toxic amyloid β oligomers adsorbed on self-assembled monolayers . Spectrochim. Acta, Part A. 95 : 526 – 532 .
  • Wąsowicz , M. , V. Subramanian , A. Dvornyk , K. Grzelak , B. Kłudkiewicz , and H. Radecka . 2008 . Comparison of electrochemical immunosensors based on gold nano materials and immunoblot techniques for detection of histidine-tagged proteins in culture medium . Biosens. Bioelectron. 24 : 284 – 289 .
  • William , T. , and L. Bleidex . 2011 . Alzheimer's Association Report 2011 Alzheimer's disease facts and figures . Alzheimer's Dementia. 7 : 208 – 244 .
  • Xie , J. , S. Reverdatto , A. Frolov , R. Hoffmann , D. S. Burz , and A. Shekhtman . 2008 . Structural basis for pattern recognition by the receptor for advanced glycation end products (RAGE) . J. Biol. Chem. 283 : 27255 – 27269 .
  • Zhang , J. , Y. Wu , B. Zhang , M. Li , S. Jia , H. Zhou , Y. Zhang , Ch. Zhang , and A. P. E. Turner . 2012 . Label-free electrochemical detection of tetracycline by an aptamer nano-biosensor . Anal. Lett. 45 : 986 – 992 .
  • Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/lanl.

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