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Rapid on-chip heterogeneous bone-cell patterning via the enhanced dielectrophoresis trap for tissue engineering application
Conference paper

Rapid on-chip heterogeneous bone-cell patterning via the enhanced dielectrophoresis trap for tissue engineering application

Chen-Ta Ho, Ruei-Zeng Lin, Hwan-You Chang and Cheng-Hsien Liu
Micro Total Analysis Systems - Proceedings of MicroTAS 2006 Conference: 10th International Conference on Miniaturized Systems for Chemistry and Life Sciences, pp.1537-1539
2006

Abstract

Bone Cell patterning Dielectrophoresis Tissue engineering
A bone-mimetic cell-patterning technique for on-chip reconstructing heterogeneous osteocytes and hydroxyapatite particles via the design of enhanced field-induced dielectrophoresis (DEP) trap is demonstrated and reported in this paper. We mimic the morphology of the Haversian canal system of bone tissue to design the concentricradial-tip-array electrodes for DEP operation. Well-defined and enhanced spatial electric field gradients are created for the in-parallel manipulation of massive individual cells and particles to from the biomimic pattern via vertical/horizontal DEP operation alternatively. Experiment results show that the osteocytes are positioned to from the shape of multiple concentric rings interlaced with pearl chain array of hydroxyapatites, which form bone-mimetic pattern. Good cell viability after cell-patterning is observed. © 2006 Society for Chemistry and Micro-Nano Systems.

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