• DocumentCode
    1532599
  • Title

    Characterization of the Electrochemical Behavior of Gastrointestinal Fluids Using a Multielectrode Sensor Probe

  • Author

    Twomey, Karen ; De Eulate, Eva Alvarez ; Marchesi, Julian R. ; Kolida, Sofia ; Gibson, Glenn ; Arrigan, Damien W M ; Ogurtsov, Vladimir I.

  • Author_Institution
    Mol. Microsyst. Group, Univ. Coll. Cork, Cork, Ireland
  • Volume
    58
  • Issue
    9
  • fYear
    2011
  • Firstpage
    2521
  • Lastpage
    2527
  • Abstract
    A characterization of gastrointestinal fluids has been performed by means of an electrochemical sensor that has potential for clinical in vivo and in vitro monitoring applications. The sensor comprised a three-electrode cell with a counter, reference, and four working electrodes, Au, Pt, Ir, and Rh. Cyclic voltammetry was used to obtain chemical information from faecal water (in vitro) and gut model (in vivo ) fluids. Stable voltammetric responses were obtained for both fluids at these noble metal working electrodes. The responses differed in shape that demonstrated the discrimination capability and the potential for practical use as a tool for gastrointestinal fluid investigation. The analysis of the stability profiles in faecal water over a 14-h duration has indicated a possible adsorption mechanism with the formation of a biolayer on the sensor surface. The stability in gut model fluids over a 42-h duration has demonstrated a more stable profile, but the mechanisms involved are more complicated to determine.
  • Keywords
    adsorption; biomedical electrodes; biomedical measurement; electrochemical sensors; gold; iridium; platinum; rhodium; voltammetry (chemical analysis); Au-Pt-Ir-Rh; adsorption mechanism; biolayer; chemical information; clinical in vitro monitoring application; clinical in vivo monitoring application; cyclic voltammetry; electrochemical property; electrochemical sensor; faecal water fluid; gastrointestinal fluid investigation; gut model fluid; multielectrode sensor probe; noble metal working electrodes; sensor surface; three-electrode cell; time 14 h; Electric potential; Electrodes; Fluids; Gold; Oxidation; Shape; Stability analysis; Electrochemical; electrode; gastrointestinal fluids; voltammetry; Biotechnology; Electrochemical Techniques; Electrodes; Equipment Design; Feces; Gastrointestinal Contents; Humans; Metals, Heavy; Models, Biological; Water;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2011.2158543
  • Filename
    5783509