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Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells
BACKGROUND: Circulating tumor cells (CTCs) are cancer cells that can be isolated via liquid biopsy from blood and can be phenotypically and genetically characterized to provide critical information for guiding cancer treatment. Current analysis of CTCs is hindered by the throughput, selectivity and...
Autores principales: | , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4085042/ https://www.ncbi.nlm.nih.gov/pubmed/24999991 http://dx.doi.org/10.1371/journal.pone.0099409 |
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author | Khoo, Bee Luan Warkiani, Majid Ebrahimi Tan, Daniel Shao-Weng Bhagat, Ali Asgar S. Irwin, Darryl Lau, Dawn Pingxi Lim, Alvin S. T. Lim, Kiat Hon Krisna, Sai Sakktee Lim, Wan-Teck Yap, Yoon Sim Lee, Soo Chin Soo, Ross A. Han, Jongyoon Lim, Chwee Teck |
author_facet | Khoo, Bee Luan Warkiani, Majid Ebrahimi Tan, Daniel Shao-Weng Bhagat, Ali Asgar S. Irwin, Darryl Lau, Dawn Pingxi Lim, Alvin S. T. Lim, Kiat Hon Krisna, Sai Sakktee Lim, Wan-Teck Yap, Yoon Sim Lee, Soo Chin Soo, Ross A. Han, Jongyoon Lim, Chwee Teck |
author_sort | Khoo, Bee Luan |
collection | PubMed |
description | BACKGROUND: Circulating tumor cells (CTCs) are cancer cells that can be isolated via liquid biopsy from blood and can be phenotypically and genetically characterized to provide critical information for guiding cancer treatment. Current analysis of CTCs is hindered by the throughput, selectivity and specificity of devices or assays used in CTC detection and isolation. METHODOLOGY/PRINCIPAL FINDINGS: Here, we enriched and characterized putative CTCs from blood samples of patients with both advanced stage metastatic breast and lung cancers using a novel multiplexed spiral microfluidic chip. This system detected putative CTCs under high sensitivity (100%, n = 56) (Breast cancer samples: 12–1275 CTCs/ml; Lung cancer samples: 10–1535 CTCs/ml) rapidly from clinically relevant blood volumes (7.5 ml under 5 min). Blood samples were completely separated into plasma, CTCs and PBMCs components and each fraction were characterized with immunophenotyping (Pan-cytokeratin/CD45, CD44/CD24, EpCAM), fluorescence in-situ hybridization (FISH) (EML4-ALK) or targeted somatic mutation analysis. We used an ultra-sensitive mass spectrometry based system to highlight the presence of an EGFR-activating mutation in both isolated CTCs and plasma cell-free DNA (cf-DNA), and demonstrate concordance with the original tumor-biopsy samples. CONCLUSIONS/SIGNIFICANCE: We have clinically validated our multiplexed microfluidic chip for the ultra high-throughput, low-cost and label-free enrichment of CTCs. Retrieved cells were unlabeled and viable, enabling potential propagation and real-time downstream analysis using next generation sequencing (NGS) or proteomic analysis. |
format | Online Article Text |
id | pubmed-4085042 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-40850422014-07-09 Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells Khoo, Bee Luan Warkiani, Majid Ebrahimi Tan, Daniel Shao-Weng Bhagat, Ali Asgar S. Irwin, Darryl Lau, Dawn Pingxi Lim, Alvin S. T. Lim, Kiat Hon Krisna, Sai Sakktee Lim, Wan-Teck Yap, Yoon Sim Lee, Soo Chin Soo, Ross A. Han, Jongyoon Lim, Chwee Teck PLoS One Research Article BACKGROUND: Circulating tumor cells (CTCs) are cancer cells that can be isolated via liquid biopsy from blood and can be phenotypically and genetically characterized to provide critical information for guiding cancer treatment. Current analysis of CTCs is hindered by the throughput, selectivity and specificity of devices or assays used in CTC detection and isolation. METHODOLOGY/PRINCIPAL FINDINGS: Here, we enriched and characterized putative CTCs from blood samples of patients with both advanced stage metastatic breast and lung cancers using a novel multiplexed spiral microfluidic chip. This system detected putative CTCs under high sensitivity (100%, n = 56) (Breast cancer samples: 12–1275 CTCs/ml; Lung cancer samples: 10–1535 CTCs/ml) rapidly from clinically relevant blood volumes (7.5 ml under 5 min). Blood samples were completely separated into plasma, CTCs and PBMCs components and each fraction were characterized with immunophenotyping (Pan-cytokeratin/CD45, CD44/CD24, EpCAM), fluorescence in-situ hybridization (FISH) (EML4-ALK) or targeted somatic mutation analysis. We used an ultra-sensitive mass spectrometry based system to highlight the presence of an EGFR-activating mutation in both isolated CTCs and plasma cell-free DNA (cf-DNA), and demonstrate concordance with the original tumor-biopsy samples. CONCLUSIONS/SIGNIFICANCE: We have clinically validated our multiplexed microfluidic chip for the ultra high-throughput, low-cost and label-free enrichment of CTCs. Retrieved cells were unlabeled and viable, enabling potential propagation and real-time downstream analysis using next generation sequencing (NGS) or proteomic analysis. Public Library of Science 2014-07-07 /pmc/articles/PMC4085042/ /pubmed/24999991 http://dx.doi.org/10.1371/journal.pone.0099409 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. |
spellingShingle | Research Article Khoo, Bee Luan Warkiani, Majid Ebrahimi Tan, Daniel Shao-Weng Bhagat, Ali Asgar S. Irwin, Darryl Lau, Dawn Pingxi Lim, Alvin S. T. Lim, Kiat Hon Krisna, Sai Sakktee Lim, Wan-Teck Yap, Yoon Sim Lee, Soo Chin Soo, Ross A. Han, Jongyoon Lim, Chwee Teck Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells |
title | Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells |
title_full | Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells |
title_fullStr | Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells |
title_full_unstemmed | Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells |
title_short | Clinical Validation of an Ultra High-Throughput Spiral Microfluidics for the Detection and Enrichment of Viable Circulating Tumor Cells |
title_sort | clinical validation of an ultra high-throughput spiral microfluidics for the detection and enrichment of viable circulating tumor cells |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4085042/ https://www.ncbi.nlm.nih.gov/pubmed/24999991 http://dx.doi.org/10.1371/journal.pone.0099409 |
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