Title :
Cellular aggregate catcher using fluidic manipulation in high compatibility with widespread micro-well-plate
Author :
Teramachi, Y. ; Shimomura, Shoji ; Tonomura, W. ; Tajima, Shinya ; Tabata, Yoshiyuki ; Konishi, Satoshi
Author_Institution :
Ritsumeikan Univ., Kusatsu, Japan
Abstract :
This paper proposes a catcher device to manipulate and transport a cellular aggregate in a micro well. A cellular aggregate (around 100 μm in diameter) is currently manipulated by a pipette. Manual manipulation by a pipette has problems; low reliability, low throughput, and difficulty in confirmation of task completion. μTAS technology, especially various particle manipulation techniques on a fluidic chip are applied to cell manipulation. We, however, take into account of compatibility with existing method such as a micro well plate and design a catcher device of a cellular aggregate in a micro well. Newly developed a catcher device flows and carries a cellular aggregate from a bottom of a well to a trap of a catcher device. This paper presents concept, design, fabrication, and experimental results of proposed cellular aggregate catcher.
Keywords :
biological techniques; cellular biophysics; microfluidics; μTAS technology; cell manipulation; cellular aggregate catcher; cellular aggregate transport; fluidic chip; fluidic manipulation; particle manipulation technique; widespread microwell plate; Aggregates; Fabrication; Manuals; Stem cells; Three-dimensional displays; Throughput; Tissue engineering; Cellular aggregate; Fluidic manipulation; Widespread micro-well-plate;
Conference_Titel :
Solid-State Sensors, Actuators and Microsystems (TRANSDUCERS & EUROSENSORS XXVII), 2013 Transducers & Eurosensors XXVII: The 17th International Conference on
Conference_Location :
Barcelona
DOI :
10.1109/Transducers.2013.6627242