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PMID: 23949794 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Slanted spiral microfluidics for the ultra-fast, label-free isolation of circulating tumor cells.

Lab on a chip ·Vol. 14 ·No. 1 ·2014-01-07 ·Pages 128-37

Warkiani ME, Guan G, Luan KB, Lee WC, Bhagat AA, Chaudhuri PK, Tan DS, Lim WT, Lee SC, Chen PC, Lim CT, Han J

Abstract

The enumeration and characterization of circulating tumor cells (CTCs), found in the peripheral blood of cancer patients, provide a potentially accessible source for cancer diagnosis and prognosis. This work reports on a novel spiral microfluidic device with a trapezoidal cross-section for ultra-fast, label-free enrichment of CTCs from clinically relevant blood volumes. The technique utilizes the inherent Dean vortex flows present in curvilinear microchannels under continuous flow, along with inertial lift forces which focus larger CTCs against the inner wall. Using a trapezoidal cross-section as opposed to a traditional rectangular cross-section, the position of the Dean vortex core can be altered to achieve separation. Smaller hematologic components are trapped in the Dean vortices skewed towards the outer channel walls and eventually removed at the outer outlet, while the larger CTCs equilibrate near the inner channel wall and are collected from the inner outlet. By using a single spiral microchannel with one inlet and two outlets, we have successfully isolated and recovered more than 80% of the tested cancer cell line cells (MCF-7, T24 and MDA-MB-231) spiked in 7.5 mL of blood within 8 min with extremely high purity (400-680 WBCs mL(-1); ~4 log depletion of WBCs). Putative CTCs were detected and isolated from 100% of the patient samples (n = 10) with advanced stage metastatic breast and lung cancer using standard biomarkers (CK, CD45 and DAPI) with the frequencies ranging from 3-125 CTCs mL(-1). We expect this simple and elegant approach can surmount the shortcomings of traditional affinity-based CTC isolation techniques as well as enable fundamental studies on CTCs to guide treatment and enhance patient care.

MeSH Terms
Antibodies, Immobilized/chemistry,immunology Breast Neoplasms/metabolism,pathology Cell Line, Tumor Cell Separation/instrumentation,methods Cell Survival Female Fluorescein-5-isothiocyanate/chemistry Humans Keratins/immunology,metabolism Leukocyte Common Antigens/immunology,metabolism Lung Neoplasms/pathology,secondary Microfluidic Analytical Techniques/instrumentation,methods Microscopy, Confocal Neoplastic Cells, Circulating/metabolism Receptor, ErbB-2/metabolism
Chemicals
Antibodies, Immobilized Keratins ERBB2 protein, human Receptor, ErbB-2 Leukocyte Common Antigens Fluorescein-5-isothiocyanate
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Warkiani Majid Ebrahimi
BioSystems and Micromechanics (BioSyM) IRG, Singapore-MIT Alliance for Research and Technology (SMART) Centre, Singapore. [email protected] [email protected].
Guan Guofeng
Luan Khoo Bee
Lee Wong Cheng
Bhagat Ali Asgar S
Chaudhuri Parthiv Kant
Tan Daniel Shao-Weng
Lim Wan Teck
Lee Soo Chin
Chen Peter C Y
Lim Chwee Teck
Han Jongyoon
Article Info
Journal
Lab on a chip
Abbr.
Lab Chip
ISSN
1473-0189
Published
2014-01-07
Pages
128-37
Language
English
Region
England
NLM ID
101128948
Subset
IM
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