Literature DB >> 17713608

Dielectrophoresis switching with vertical sidewall electrodes for microfluidic flow cytometry.

Lisen Wang1, Lisa A Flanagan, Edwin Monuki, Noo Li Jeon, Abraham P Lee.   

Abstract

A novel dielectrophoresis switching with vertical electrodes in the sidewall of microchannels for multiplexed switching of objects has been designed, fabricated and tested. With appropriate electrode design, lateral DEP force can be generated so that one can dynamically position particulates along the width of the channel. A set of interdigitated electrodes in the sidewall of the microchannels is used for the generation of non-uniform electrical fields to generate negative DEP forces that repel beads/cells from the sidewalls. A countering DEP force is generated from another set of electrodes patterned on the opposing sidewall. These lateral negative DEP forces can be adjusted by the voltage and frequency applied. By manipulating the coupled DEP forces, the particles flowing through the microchannel can be positioned at different equilibrium points along the width direction and continue to flow into different outlet channels. Experimental results for switching biological cells and polystyrene microbeads to multiple outlets (up to 5) have been achieved. This novel particle switching technique can be integrated with other particle detection components to enable microfluidic flow cytometry systems.

Entities:  

Mesh:

Year:  2007        PMID: 17713608      PMCID: PMC3437924          DOI: 10.1039/b705386j

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  23 in total

1.  Cell separation by dielectrophoretic field-flow-fractionation.

Authors:  X B Wang; J Yang; Y Huang; J Vykoukal; F F Becker; P R Gascoyne
Journal:  Anal Chem       Date:  2000-02-15       Impact factor: 6.986

2.  Reversible switching of high-speed air-liquid two-phase flows using electrowetting-assisted flow-pattern change.

Authors:  Dongeun Huh; Alan H Tkaczyk; Joong Hwan Bahng; Yu Chang; Hsien-Hung Wei; James B Grotberg; Chang-Jin Kim; Katsuo Kurabayashi; Shuichi Takayama
Journal:  J Am Chem Soc       Date:  2003-12-03       Impact factor: 15.419

Review 3.  Micro total analysis systems. 2. Analytical standard operations and applications.

Authors:  Pierre-Alain Auroux; Dimitri Iossifidis; Darwin R Reyes; Andreas Manz
Journal:  Anal Chem       Date:  2002-06-15       Impact factor: 6.986

4.  Microfluidic sorting of mammalian cells by optical force switching.

Authors:  Mark M Wang; Eugene Tu; Daniel E Raymond; Joon Mo Yang; Haichuan Zhang; Norbert Hagen; Bob Dees; Elinore M Mercer; Anita H Forster; Ilona Kariv; Philippe J Marchand; William F Butler
Journal:  Nat Biotechnol       Date:  2004-12-19       Impact factor: 54.908

5.  3-D electrode designs for flow-through dielectrophoretic systems.

Authors:  Benjamin Y Park; Marc J Madou
Journal:  Electrophoresis       Date:  2005-10       Impact factor: 3.535

6.  Sample flow switching techniques on microfluidic chips.

Authors:  Yu-Jen Pan; Jin-Jie Lin; Win-Jet Luo; Ruey-Jen Yang
Journal:  Biosens Bioelectron       Date:  2005-08-19       Impact factor: 10.618

7.  Marker-specific sorting of rare cells using dielectrophoresis.

Authors:  Xiaoyuan Hu; Paul H Bessette; Jiangrong Qian; Carl D Meinhart; Patrick S Daugherty; Hyongsok T Soh
Journal:  Proc Natl Acad Sci U S A       Date:  2005-10-18       Impact factor: 11.205

Review 8.  Applications of dielectrophoresis in biotechnology.

Authors:  R Pethig; G H Markx
Journal:  Trends Biotechnol       Date:  1997-10       Impact factor: 19.536

9.  A microfabricated fluorescence-activated cell sorter.

Authors:  A Y Fu; C Spence; A Scherer; F H Arnold; S R Quake
Journal:  Nat Biotechnol       Date:  1999-11       Impact factor: 54.908

10.  Insulator-based dielectrophoresis for the selective concentration and separation of live bacteria in water.

Authors:  Blanca H Lapizco-Encinas; Blake A Simmons; Eric B Cummings; Yolanda Fintschenko
Journal:  Electrophoresis       Date:  2004-06       Impact factor: 3.535

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  24 in total

1.  AC-dielectrophoretic characterization and separation of submicron and micron particles using sidewall AgPDMS electrodes.

Authors:  Nuttawut Lewpiriyawong; Chun Yang
Journal:  Biomicrofluidics       Date:  2012-03-15       Impact factor: 2.800

2.  Hydrodynamic self-focusing in a parallel microfluidic device through cross-filtration.

Authors:  S Torino; M Iodice; I Rendina; G Coppola; E Schonbrun
Journal:  Biomicrofluidics       Date:  2015-11-20       Impact factor: 2.800

3.  Characterization and use of laser-based lysis for cell analysis on-chip.

Authors:  Hsuan-Hong Lai; Pedro A Quinto-Su; Christopher E Sims; Mark Bachman; G P Li; Vasan Venugopalan; Nancy L Allbritton
Journal:  J R Soc Interface       Date:  2008-10-06       Impact factor: 4.118

4.  Standing surface acoustic wave (SSAW)-based microfluidic cytometer.

Authors:  Yuchao Chen; Ahmad Ahsan Nawaz; Yanhui Zhao; Po-Hsun Huang; J Phillip McCoy; Stewart J Levine; Lin Wang; Tony Jun Huang
Journal:  Lab Chip       Date:  2014-03-07       Impact factor: 6.799

5.  On-demand electrostatic droplet charging and sorting.

Authors:  Byungwook Ahn; Kangsun Lee; Rajagopal Panchapakesan; Kwang W Oh
Journal:  Biomicrofluidics       Date:  2011-06-23       Impact factor: 2.800

6.  Three dimensional microfluidics with embedded microball lenses for parallel and high throughput multicolor fluorescence detection.

Authors:  Y J Fan; Y C Wu; Y Chen; Y C Kung; T H Wu; K W Huang; H J Sheen; P Y Chiou
Journal:  Biomicrofluidics       Date:  2013-08-21       Impact factor: 2.800

7.  Microfluidic dielectrophoretic sorter using gel vertical electrodes.

Authors:  Jason Luo; Edward L Nelson; G P Li; Mark Bachman
Journal:  Biomicrofluidics       Date:  2014-05-23       Impact factor: 2.800

8.  Enrichment of diluted cell populations from large sample volumes using 3D carbon-electrode dielectrophoresis.

Authors:  Monsur Islam; Rucha Natu; Maria Fernanda Larraga-Martinez; Rodrigo Martinez-Duarte
Journal:  Biomicrofluidics       Date:  2016-06-16       Impact factor: 2.800

9.  Fifty years of dielectrophoretic cell separation technology.

Authors:  Michael P Hughes
Journal:  Biomicrofluidics       Date:  2016-06-30       Impact factor: 2.800

10.  Dielectrophoretic capture of low abundance cell population using thick electrodes.

Authors:  Julien Marchalot; Jean-François Chateaux; Magalie Faivre; Hichem C Mertani; Rosaria Ferrigno; Anne-Laure Deman
Journal:  Biomicrofluidics       Date:  2015-09-02       Impact factor: 2.800

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