DocumentCode :
3015459
Title :
CNT-embedded electro-microchannel for cell electroporation
Author :
Shahini, Mehdi ; Yeow, John T. W.
Author_Institution :
Univ. of Waterloo, Waterloo, ON, Canada
fYear :
2013
fDate :
5-8 Aug. 2013
Firstpage :
134
Lastpage :
137
Abstract :
We present a new approach for electroporating cells through a CNT-featured microfluidic device. Micro-devices have become a promising approach for cell manipulation systems. Among cell manipulations techniques, cell electroporation requires relatively higher power to disrupt membrane of cells. This requirement opposes integration of cell electroporation with other on-chip functions to achieve a full-functional point-of-care testing machine. Here we present a new approach for electroporating cells with a microfluidic chip featured by CNT on one electrode. A new methodology for embedding aligned CNT on microchannel has been presented. In the CNT-embedded device, CHO cells are passed through a forest of aligned CNTs so that the enhanced electric field near the tip of CNTs get the cells electroporated. Calcein AM dye has been used to indicate electroporation. The results show that with an operational voltage as low as 3 V CHO cells are electroporated while the yield rate of electroporation is 72% higher compared to a no-CNT device. This achievement is considerable progress toward integration of cell electroporation with other low-voltage on-chip mechanisms.
Keywords :
bioMEMS; bioelectric phenomena; biomedical measurement; biomembrane transport; carbon nanotubes; dyes; lab-on-a-chip; microchannel flow; micromanipulators; nanobiotechnology; proteins; C; CHO cells; CNT tip; CNT-embedded electro-microchannel; CNT-featured microfluidic device; aligned CNT forest; calcein AM dye; cell electroporation integration; cell manipulation systems; cell manipulation techniques; cell membrane; electrode; electroporating cells; enhanced electric field; full-functional point-of-care testing machine; low-voltage on-chip mechanisms; microfluidic chip; on-chip functions; operational voltage; voltage 3 V; Chemicals; Electric fields; Fluorescence; Glass; Microchannel; Microfluidics; Polyimides;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology (IEEE-NANO), 2013 13th IEEE Conference on
Conference_Location :
Beijing
ISSN :
1944-9399
Print_ISBN :
978-1-4799-0675-8
Type :
conf
DOI :
10.1109/NANO.2013.6720855
Filename :
6720855
Link To Document :
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