DocumentCode :
252760
Title :
Nanolocalized single cell membrane nanoelectroporation
Author :
Santra, T.S. ; Lee, Chia-Wei ; Kar, Soummya ; Borana, J. ; Wang, Pi-Chung ; Tseng, F.-G.
Author_Institution :
Inst. of Nano Eng. & Microsyst., Nat. Tsing Hua Univ., Hsinchu, Taiwan
fYear :
2014
fDate :
13-16 April 2014
Firstpage :
285
Lastpage :
288
Abstract :
Today single cell research is a great interest to analyze cell to cell or cell to environment behavior with their intracellular compounds, where bulk measurement can provide average value. To deliver biomolecules precise and localized way into single living cell with high transfection rate and high cell viability is a challenging and promisible task for biological and therapeutic research. In this report, we present a nano-localized single cell nano-electroporation technique, where electroporation take place in a very precise and localized area on a single cell membrane to achieve high efficient delivery with high cell viability. We fabricated 60nm gap with 40 nm triangular Indium Tin Oxide (ITO) based nano-eletcrode tip, which can intense electric field in a nano-localized area of a single cell to permeabilize cell membrane and deliver exogenous biomolecules from outside to inside of the cell. This device successfully deliver dyes, proteins into single cell with high cell viability (98%). The process not only control precise delivery mechanism into single cell with membrane reversibility, but also it can provide special, temporal and qualitative dosage control, which might be beneficial for therapeutic and biological cell studies.
Keywords :
biological techniques; biomembranes; cellular biophysics; dyes; indium compounds; nanobiotechnology; proteins; ITO; biological research; bulk measurement; cell to cell behavior; cell to environment behavior; dosage control; dyes; exogenous biomolecules; high cell viability; high transfection rate; indium tin oxide; intracellular compounds; nanoelectrode tip; nanolocalized single cell nano-electroporation technique; nnolocalized single cell membrane nanoelectroporation; proteins; single cell research; therapeutic research; Biomembranes; Electric fields; Electrodes; Indium tin oxide; Molecular biophysics; Nanobioscience; Nanoscale devices;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nano/Micro Engineered and Molecular Systems (NEMS), 2014 9th IEEE International Conference on
Conference_Location :
Waikiki Beach, HI
Type :
conf
DOI :
10.1109/NEMS.2014.6908809
Filename :
6908809
Link To Document :
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