• DocumentCode
    1896477
  • Title

    Electrical quantification of low concentrations of specific protein in complex biological solutions

  • Author

    Girard, A. ; De Sagazan, O. ; Le Bihan, F. ; Geneste, F. ; Mohammed-Brahim, T. ; Dauphas, S. ; Brissot, P. ; Guguen-Guillouzo, C.

  • Author_Institution
    IETR, Univ. de Rennes 1, Rennes
  • fYear
    2008
  • fDate
    26-29 Oct. 2008
  • Firstpage
    638
  • Lastpage
    641
  • Abstract
    A sensitive immunosensor based on charge detection is developed for proteins. Its aim is to select and quantify low protein concentrations in a complex environment. This highly sensitive sensor is a SGFET (Suspended Gate Field Effect Transistor) whose gate is suspended at 500 nm high above the silicon channel and embedded in silicon nitride. This electrical insulation and the general design of the sensor allow to graft biomolecules and to experiment in liquids and particularly in complex biological solutions. To prove its efficiency, a blood plasma protein is used as an example : the transferrin. Specific antibodies are covalently immobilized under the gate by a new highly reproducible chemical functionalization. SGFET is duplicated in a 3x3 matrix that permits to produce statistical results and to increase reliability. Moreover, our device can detect and quantify a specific protein, here transferrin with 10 to 100 more sensitivity than current clinical tests in a complex solution.
  • Keywords
    MOSFET; biosensors; insulation; molecular biophysics; proteins; SGFET; antibodies; biomolecules; blood plasma; charge detection; complex biological solutions; electrical insulation; immunosensor; liquids; protein; suspended gate field effect transistor; transferrin; Biosensors; Blood; Chemical and biological sensors; Dielectric liquids; Dielectrics and electrical insulation; FETs; Immune system; Molecular biophysics; Protein engineering; Silicon;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Sensors, 2008 IEEE
  • Conference_Location
    Lecce
  • ISSN
    1930-0395
  • Print_ISBN
    978-1-4244-2580-8
  • Electronic_ISBN
    1930-0395
  • Type

    conf

  • DOI
    10.1109/ICSENS.2008.4716522
  • Filename
    4716522