• DocumentCode
    1331170
  • Title

    Concentration of Magnetic Beads Utilizing Light-Induced Electro-Osmosis Flow

  • Author

    Shih-Mo Yang ; Harishchandra, P.T. ; Tung-Ming Yu ; Ming-Huei Liu ; Long Hsu ; Cheng-Hsien Liu

  • Author_Institution
    Dept. of Electrophys., Nat. Chiao Tung Univ., Hsinchu, Taiwan
  • Volume
    47
  • Issue
    10
  • fYear
    2011
  • Firstpage
    2418
  • Lastpage
    2421
  • Abstract
    Magnetic beads are widely utilized for separating biomolecules, DNA and RNA. Traditionally, bulk magnet is utilized for manipulation these particles but when it comes to microscale bulk magnet is not the efficient method. Here, we utilize an organic photoconductive material, TiOPc, to generate light-induced electro-osmosis flow on chip. The fabrication process is convenient to be handled by the researchers and biologists without cleanroom IC fabrication facility. When specifically designed light pattern is projected onto the TiOPc substrate, the conductivity of the organic material layer within the illuminating region increases and the charges are locally assembled on its surface to form a virtual electrode. With an external ac voltage of 5 Vpp at 10 kHz, numerous magnetic beads are attracted from the nonilluminating region toward the center of light-pattern illuminating region. Driven by the moving light image, the grouped magnetic beads can be manipulated and merged in a desired way or direction. The light manipulation process provides a flexible and convenient approach for in vitro control of magnetic beads. We expect that this light-driven technology would display a multifunctional platform for manipulation of microparticles.
  • Keywords
    DNA; biomagnetism; electrochemical electrodes; electrophoresis; flow; magnetic particles; magnetic separation; molecular biophysics; osmosis; photoconductivity; DNA; RNA; biomolecules; frequency 10 kHz; light-induced electroosmosis flow; light-pattern illuminating region; magnetic beads; magnetic particles; magnetic separation; microparticles; organic photoconductive material; photoconductivity; surface assembly; virtual electrode; voltage 5 V; Educational institutions; Electro-osmosis; Fabrication; Glass; Magnetic liquids; Magnetic resonance imaging; Magnetic separation; Electro-osmosis flow; TiOPc; light-induced dielectrophoresis; magnetic beads;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2011.2158194
  • Filename
    6028008