• DocumentCode
    165547
  • Title

    Optical velocity control of microtubules driven by kinesin motors

  • Author

    Nakahara, Tatsushi ; Shintaku, Hirofumi ; Kotera, Hidetoshi ; Yokokawa, Ryuji

  • Author_Institution
    Dept. of Microeng., Kyoto Univ., Kyoto, Japan
  • fYear
    2014
  • fDate
    18-21 Aug. 2014
  • Firstpage
    120
  • Lastpage
    123
  • Abstract
    Microtubule gliding on a kinesin-coated surface may be applied as a nanoactuator to manipulate nanoscale materials in a microfluidic environment. However, controlling the velocity and direction of microtubule gliding has been a major challenge for bioengineering. To develop a novel method of molecular manipulation, we propose a technique to control the velocity of gliding microtubules by light irradiance, which mediates the temperature of the assay. To measure the temperature, we integrated a gold-resistive temperature detector with the substrate. After temperature calibration, we measured the relationship between temperature and light irradiance. The results showed that the temperature increased approximately by 10°C by adjusting irradiance from zero to 13.5 W/cm2. In the gold area, the velocity of microtubules increased 1.8-fold at an irradiance of 13.5 W/cm2.
  • Keywords
    actuators; biology; calibration; manipulators; microfluidics; optical control; temperature measurement; velocity control; bioengineering; gliding microtubules; gold-resistive temperature detector; kinesin motors; kinesin-coated surface; microfluidic environment; microtubule gliding; molecular manipulation; nanoactuator; nanoscale material manipulation; optical velocity control; temperature calibration; temperature measurement; Gold; Proteins; Substrates; Temperature; Temperature measurement; Temperature sensors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nanotechnology (IEEE-NANO), 2014 IEEE 14th International Conference on
  • Conference_Location
    Toronto, ON
  • Type

    conf

  • DOI
    10.1109/NANO.2014.6968019
  • Filename
    6968019