• DocumentCode
    1761365
  • Title

    A Fully Microfabricated Electrochemical Sensor and its Implementation for Detection of Methicillin Resistance in Staphylococcus Aureus

  • Author

    Koydemir, Hatice Ceylan ; Kulah, Haluk ; Alp, Alpaslan ; Uner, Aysegul H. ; Hascelik, Gulsen ; Ozgen, Canan

  • Author_Institution
    Dept. of Chem. Eng., Middle East Tech. Univ., Ankara, Turkey
  • Volume
    14
  • Issue
    6
  • fYear
    2014
  • fDate
    41791
  • Firstpage
    1844
  • Lastpage
    1851
  • Abstract
    On-chip detection of biological analytes can enable diagnosis at the point of care. Combining the advantages of microelectromechanical system (MEMS) technology and molecular methods, we present the design of an integrated microfluidic platform, a microelectrochemical sensor (μECS), and its implementation for the detection of methicillin resistance in Staphylococcus aureus. This platform is capable of electrochemically sensing the target analyte in a microfluidic reactor without the usage of bulky electrodes, rendering it useful for in vitro diagnostics. In our experiments, the functionality of the sensor was tested for detecting specific DNA sequences of mecA gene (an indicator of methicillin resistance) over a range of concentrations of DNA (down to 10 pM). Synthetic oligonucleotides and bacterial PCR product were used as a target analyte in Hoechst 33258 marker-based detection and horseradish peroxidase-based detection, respectively. The results revealed that this platform has high sensitivity and selectivity. Also, its compatibility to MEMS processes enables its use with different applications ranging from detecting various types of cancers to endemics. The designed μECS can enable the detection of biological analytes of interest at low cost and high throughput.
  • Keywords
    DNA; bioMEMS; biochemistry; biosensors; cancer; electrochemical sensors; genetics; microfabrication; microfluidics; microorganisms; microsensors; molecular biophysics; μECS; DNA sequences detection; Hoechst 33258 marker-based detection; MEMS technology; Methicillin resistance detection; Staphylococcus aureus; bacterial PCR product; cancer detection; endemics; horseradish peroxidase-based detection; integrated microfluidic design; mecA gene; microelectrochemical sensor; microelectromechanical system; microfabricated electrochemical sensor; microfluidic reactor; molecular methods; on-chip biological analytes detection; point of care; synthetic oligonucleotides; vitro diagnostics; DNA; Electrodes; Gold; Probes; Rough surfaces; Sensors; Surface roughness; MEMS; biosensor; electrochemical detection; mecA; methicillin resistant Staphylococcus aureus (MRSA); microfabrication;
  • fLanguage
    English
  • Journal_Title
    Sensors Journal, IEEE
  • Publisher
    ieee
  • ISSN
    1530-437X
  • Type

    jour

  • DOI
    10.1109/JSEN.2014.2305152
  • Filename
    6736105