Integrated electrical concentration and lysis of cells in a microfluidic chip
Lysing cells is an important step in the analysis of intracellular contents. Concentrating cells is often required in order to acquire adequate cells for lysis. This work presents an integrated concentration and lysis of mammalian cells in a constriction microchannel using dc-biased ac electric fiel...
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Published in | Biomicrofluidics Vol. 4; no. 4; pp. 44101 - 44110 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
United States
American Institute of Physics
01.10.2010
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Abstract | Lysing cells is an important step in the analysis of intracellular contents. Concentrating cells is often required in order to acquire adequate cells for lysis. This work presents an integrated concentration and lysis of mammalian cells in a constriction microchannel using dc-biased ac electric fields. By adjusting the dc component, the electrokinetic cell motion can be precisely controlled, leading to an easy switch between concentration and lysis of red blood cells in the channel constriction. These two operations are also used in conjunction to demonstrate a continuous concentration and separation of leukemia cells from red blood cells in the same microchannel. The observed cell behaviors agree reasonably with the simulation results. |
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AbstractList | Lysing cells is an important step in the analysis of intracellular contents. Concentrating cells is often required in order to acquire adequate cells for lysis. This work presents an integrated concentration and lysis of mammalian cells in a constriction microchannel using dc-biased ac electric fields. By adjusting the dc component, the electrokinetic cell motion can be precisely controlled, leading to an easy switch between concentration and lysis of red blood cells in the channel constriction. These two operations are also used in conjunction to demonstrate a continuous concentration and separation of leukemia cells from red blood cells in the same microchannel. The observed cell behaviors agree reasonably with the simulation results. Lysing cells is an important step in the analysis of intracellular contents. Concentrating cells is often required in order to acquire adequate cells for lysis. This work presents an integrated concentration and lysis of mammalian cells in a constriction microchannel using dc-biased ac electric fields. By adjusting the dc component, the electrokinetic cell motion can be precisely controlled, leading to an easy switch between concentration and lysis of red blood cells in the channel constriction. These two operations are also used in conjunction to demonstrate a continuous concentration and separation of leukemia cells from red blood cells in the same microchannel. The observed cell behaviors agree reasonably with the simulation results.Lysing cells is an important step in the analysis of intracellular contents. Concentrating cells is often required in order to acquire adequate cells for lysis. This work presents an integrated concentration and lysis of mammalian cells in a constriction microchannel using dc-biased ac electric fields. By adjusting the dc component, the electrokinetic cell motion can be precisely controlled, leading to an easy switch between concentration and lysis of red blood cells in the channel constriction. These two operations are also used in conjunction to demonstrate a continuous concentration and separation of leukemia cells from red blood cells in the same microchannel. The observed cell behaviors agree reasonably with the simulation results. |
Author | Tzeng, Tzuen-Rong Church, Christopher Huang, Guohui Zhu, Junjie Xuan, Xiangchun |
Author_xml | – sequence: 1 givenname: Christopher surname: Church fullname: Church, Christopher organization: Clemson University – sequence: 2 givenname: Junjie surname: Zhu fullname: Zhu, Junjie organization: Clemson University – sequence: 3 givenname: Guohui surname: Huang fullname: Huang, Guohui organization: Clemson University – sequence: 4 givenname: Tzuen-Rong surname: Tzeng fullname: Tzeng, Tzuen-Rong organization: Clemson University – sequence: 5 givenname: Xiangchun surname: Xuan fullname: Xuan, Xiangchun email: xcxuan@clemson.edu organization: Clemson University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/20981237$$D View this record in MEDLINE/PubMed |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 Author to whom correspondence should be addressed. Electronic mail: xcxuan@clemson.edu. Tel.: 864-656-5630. FAX: 864-656-7299. |
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Title | Integrated electrical concentration and lysis of cells in a microfluidic chip |
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