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A microfluidic approach towards hybridoma generation for cancer immunotherapy
Author(s) -
YenTa Lu,
Gaurav Pendharkar,
Chung-Huan Lu,
ChiaMing Chang,
ChengHsien Liu
Publication year - 2015
Publication title -
oncotarget
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.373
H-Index - 127
ISSN - 1949-2553
DOI - 10.18632/oncotarget.5550
Subject(s) - electrofusion , immunotherapy , cancer , cancer cell , homogeneous , dielectrophoresis , medicine , nanotechnology , cancer research , materials science , microfluidics , physics , metallurgy , thermodynamics
Dendritic cells/tumor fusions have shown to elicit anti-cancer immunity in different cancer types. However, the application of these vaccines for human cancer immunotherapy are limited by the instable quality and insufficient quanity of fusion cells. We present a cell electrofusion chip fabricated using soft lithography technique, which combines the rapid and precise cell pairing microstructures and the high yield electrofusion micro-electrodes to improve the cell fusion. The design uses hydrodynamic trapping in combination with positive dielectrophoretic force (pDEP) to achieve cell fusion. The chip consists of total 960 pairs of trapping channels, which are capable of pairing and fusing both homogeneous and heterogeneous types of cells. The fused cells can be easily taken out of the chip that makes this device a distinguishable from other designs. We observe pairing efficiency of 68% with fusion efficiency of 64%.

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