Literature DB >> 20011619

Dielectrophoretic Separation of Cancer Cells from Blood.

Peter R C Gascoyne1, Xiao-Bo Wang, Ying Huang, Frederick F Becker.   

Abstract

Recent measurements have demonstrated that the dielectric properties of cells depend on their type and physiological status. For example, MDA-231 human breast cancer cells were found to have a mean plasma membrane specific capacitance of 26 mF/m(2), more than double the value (11 mF/m(2)) observed for resting T-lymphocytes. When an inhomogeneous ac electric field is applied to a particle, a dielectrophoretic (DEP) force arises that depends on the particle dielectric properties. Therefore, cells having different dielectric characteristics will experience differential DEP forces when subjected to such a field. In this article, we demonstrate the use of differential DEP forces for the separation of several different cancerous cell types from blood in a dielectric affinity column. These separations were accomplished using thin, flat chambers having microelectrode arrays on the bottom wall. DEP forces generated by the application of ac fields to the electrodes were used to influence the rate of elution of cells from the chamber by hydrodynamic forces within a parabolic fluid flow profile. Electrorotation measurements were first made on the various cell types found within cell mixtures to be separated, and theoretical modeling was used to derive the cell dielectric parameters. Optimum separation conditions were then predicted from the frequency and suspension conductivity dependencies of cell DEP responses defined by these parameters. Cell separations were then undertaken for various ratios of cancerous to normal cells at different concentrations. Eluted cells were characterized in terms of separation efficiency, cell viability, and separation speed. For example, 100% efficiency was achieved for purging MDA-231 cells from blood at the tumor to normal cell ratio 1:1 x 10(5) or 1:3 x 10(5), cell viability was not compromised, and separation rates were at least 10(3) cells/s. Theoretical and experimental criteria for the design and operation of such separators are presented.

Entities:  

Year:  1997        PMID: 20011619      PMCID: PMC2790288          DOI: 10.1109/28.585856

Source DB:  PubMed          Journal:  IEEE Trans Ind Appl        ISSN: 0093-9994            Impact factor:   3.654


  20 in total

1.  Differences in the AC electrodynamics of viable and non-viable yeast cells determined through combined dielectrophoresis and electrorotation studies.

Authors:  Y Huang; R Hölzel; R Pethig; X B Wang
Journal:  Phys Med Biol       Date:  1992-07       Impact factor: 3.609

2.  Separation of blood leucocytes, granulocytes and lymphocytes.

Authors:  A Boyum
Journal:  Tissue Antigens       Date:  1974

Review 3.  The passive electrical properties of biological systems: their significance in physiology, biophysics and biotechnology.

Authors:  R Pethig; D B Kell
Journal:  Phys Med Biol       Date:  1987-08       Impact factor: 3.609

Review 4.  Macrophage activation by T cells: cognate and non-cognate signals.

Authors:  R D Stout
Journal:  Curr Opin Immunol       Date:  1993-06       Impact factor: 7.486

Review 5.  The use of monoclonal antibodies in allogeneic bone marrow transplantation.

Authors:  A Fischer
Journal:  Br J Haematol       Date:  1993-04       Impact factor: 6.998

6.  Separation of human breast cancer cells from blood by differential dielectric affinity.

Authors:  F F Becker; X B Wang; Y Huang; R Pethig; J Vykoukal; P R Gascoyne
Journal:  Proc Natl Acad Sci U S A       Date:  1995-01-31       Impact factor: 11.205

7.  Non-uniform spatial distributions of both the magnitude and phase of AC electric fields determine dielectrophoretic forces.

Authors:  X B Wang; M P Hughes; Y Huang; F F Becker; P R Gascoyne
Journal:  Biochim Biophys Acta       Date:  1995-02-23

8.  Long-term human breast carcinoma cell lines of metastatic origin: preliminary characterization.

Authors:  R Cailleau; M Olivé; Q V Cruciger
Journal:  In Vitro       Date:  1978-11

9.  Relative malignant potential of human breast carcinoma cell lines established from pleural effusions and a brain metastasis.

Authors:  R D Zhang; I J Fidler; J E Price
Journal:  Invasion Metastasis       Date:  1991

10.  Heterogeneity in the circulating neutrophil pool: studies on subpopulations separated by continuous flow electrophoresis.

Authors:  P Eggleton; D Fisher; N Crawford
Journal:  J Leukoc Biol       Date:  1992-06       Impact factor: 4.962

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  71 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.  The removal of human breast cancer cells from hematopoietic CD34+ stem cells by dielectrophoretic field-flow-fractionation.

Authors:  Y Huang; J Yang; X B Wang; F F Becker; P R Gascoyne
Journal:  J Hematother Stem Cell Res       Date:  1999-10

Review 3.  Particle separation by dielectrophoresis.

Authors:  Peter R C Gascoyne; Jody Vykoukal
Journal:  Electrophoresis       Date:  2002-07       Impact factor: 3.535

4.  Droplet-based chemistry on a programmable micro-chip.

Authors:  Jon A Schwartz; Jody V Vykoukal; Peter R C Gascoyne
Journal:  Lab Chip       Date:  2003-11-11       Impact factor: 6.799

5.  Dielectrophoretic separation of mouse melanoma clones.

Authors:  Ahmet C Sabuncu; Jie A Liu; Stephen J Beebe; Ali Beskok
Journal:  Biomicrofluidics       Date:  2010-06-16       Impact factor: 2.800

6.  The fractal dimension of cell membrane correlates with its capacitance: a new fractal single-shell model.

Authors:  Xujing Wang; Frederick F Becker; Peter R C Gascoyne
Journal:  Chaos       Date:  2010-12       Impact factor: 3.642

7.  Isolation and manipulation of living adherent cells by micromolded magnetic rafts.

Authors:  Philip C Gach; Yuli Wang; Colleen Phillips; Christopher E Sims; Nancy L Allbritton
Journal:  Biomicrofluidics       Date:  2011-09-20       Impact factor: 2.800

8.  Dielectrophoretic segregation of different human cell types on microscope slides.

Authors:  Chandra M Das; Frederick Becker; Suzanne Vernon; Jamileh Noshari; Celine Joyce; Peter R C Gascoyne
Journal:  Anal Chem       Date:  2005-05-01       Impact factor: 6.986

9.  Nanoscale dielectrophoretic spectroscopy of individual immobilized mammalian blood cells.

Authors:  Brian P Lynch; Al M Hilton; Garth J Simpson
Journal:  Biophys J       Date:  2006-06-23       Impact factor: 4.033

10.  Membrane dielectric changes indicate induced apoptosis in HL-60 cells more sensitively than surface phosphatidylserine expression or DNA fragmentation.

Authors:  Xujing Wang; Frederick F Becker; Peter R C Gascoyne
Journal:  Biochim Biophys Acta       Date:  2002-08-31
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