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Enrichment and mutation detection of circulating tumor cells from blood samples

The potential of circulating tumor cells (CTCs) in the diagnosis and prognosis of cancer patients has become increasingly attractive. However, molecular analysis of CTCs is hindered by low sensitivity and a high level of background leukocytes in CTC enrichment technologies. We have developed a novel...

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Autores principales: Kou, Ruqin, Zhao, Jian, Gogoi, Priya, Carskadon, Shannon, Chow, Will, Hwang, Clara, Palanisamy, Nallasivam, Leung, Conrad, Wang, Yixin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983925/
https://www.ncbi.nlm.nih.gov/pubmed/29620284
http://dx.doi.org/10.3892/or.2018.6342
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author Kou, Ruqin
Zhao, Jian
Gogoi, Priya
Carskadon, Shannon
Chow, Will
Hwang, Clara
Palanisamy, Nallasivam
Leung, Conrad
Wang, Yixin
author_facet Kou, Ruqin
Zhao, Jian
Gogoi, Priya
Carskadon, Shannon
Chow, Will
Hwang, Clara
Palanisamy, Nallasivam
Leung, Conrad
Wang, Yixin
author_sort Kou, Ruqin
collection PubMed
description The potential of circulating tumor cells (CTCs) in the diagnosis and prognosis of cancer patients has become increasingly attractive. However, molecular analysis of CTCs is hindered by low sensitivity and a high level of background leukocytes in CTC enrichment technologies. We have developed a novel protocol using a microfluidic device, which enriches and retrieves CTCs from blood samples. The principle of CTC capturing is that tumor cells are larger and less deformable than normal blood cells. To evaluate the potential of utilizing Celsee PREP100 in CTC molecular analysis, we prepared prostate cancer cell lines PC3 and LNCaP, retrieved the captured cells and analyzed them using PCR amplicon sequencing. We were able to recover an average of 79% of 110-1,100 PC3 and 60–1,500 LNCaP cells, and detect the p.K139fs*3 deletion of the p53 gene in PC3 cells and p.T877A mutation of the androgen receptor gene in LNCaP cells. Next, we spiked these two types of cells into normal donor blood samples, captured the cells and analyzed them using PCR amplicon sequencing. The PC3 and LNCaP cells were captured and retrieved with the ratio of captured CTCs to the background leukocytes reaching 1:1.5 for PC3 and 1:2.9 for LNCaP cells. We further revealed that the p.K139fs*3 deletion and p.T877A mutation can be detected in the captured PC3 and LNCaP cells, respectively. We successfully validated this approach using clinical blood samples from patients with metastatic prostate cancer. Our results demonstrated a novel approach for CTC enrichment and illustrated the potential of CTC molecular characterization for diagnosis, prognosis and treatment selection of patients with metastatic malignancy.
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spelling pubmed-59839252018-06-04 Enrichment and mutation detection of circulating tumor cells from blood samples Kou, Ruqin Zhao, Jian Gogoi, Priya Carskadon, Shannon Chow, Will Hwang, Clara Palanisamy, Nallasivam Leung, Conrad Wang, Yixin Oncol Rep Articles The potential of circulating tumor cells (CTCs) in the diagnosis and prognosis of cancer patients has become increasingly attractive. However, molecular analysis of CTCs is hindered by low sensitivity and a high level of background leukocytes in CTC enrichment technologies. We have developed a novel protocol using a microfluidic device, which enriches and retrieves CTCs from blood samples. The principle of CTC capturing is that tumor cells are larger and less deformable than normal blood cells. To evaluate the potential of utilizing Celsee PREP100 in CTC molecular analysis, we prepared prostate cancer cell lines PC3 and LNCaP, retrieved the captured cells and analyzed them using PCR amplicon sequencing. We were able to recover an average of 79% of 110-1,100 PC3 and 60–1,500 LNCaP cells, and detect the p.K139fs*3 deletion of the p53 gene in PC3 cells and p.T877A mutation of the androgen receptor gene in LNCaP cells. Next, we spiked these two types of cells into normal donor blood samples, captured the cells and analyzed them using PCR amplicon sequencing. The PC3 and LNCaP cells were captured and retrieved with the ratio of captured CTCs to the background leukocytes reaching 1:1.5 for PC3 and 1:2.9 for LNCaP cells. We further revealed that the p.K139fs*3 deletion and p.T877A mutation can be detected in the captured PC3 and LNCaP cells, respectively. We successfully validated this approach using clinical blood samples from patients with metastatic prostate cancer. Our results demonstrated a novel approach for CTC enrichment and illustrated the potential of CTC molecular characterization for diagnosis, prognosis and treatment selection of patients with metastatic malignancy. D.A. Spandidos 2018-06 2018-03-30 /pmc/articles/PMC5983925/ /pubmed/29620284 http://dx.doi.org/10.3892/or.2018.6342 Text en Copyright: © Kou et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Kou, Ruqin
Zhao, Jian
Gogoi, Priya
Carskadon, Shannon
Chow, Will
Hwang, Clara
Palanisamy, Nallasivam
Leung, Conrad
Wang, Yixin
Enrichment and mutation detection of circulating tumor cells from blood samples
title Enrichment and mutation detection of circulating tumor cells from blood samples
title_full Enrichment and mutation detection of circulating tumor cells from blood samples
title_fullStr Enrichment and mutation detection of circulating tumor cells from blood samples
title_full_unstemmed Enrichment and mutation detection of circulating tumor cells from blood samples
title_short Enrichment and mutation detection of circulating tumor cells from blood samples
title_sort enrichment and mutation detection of circulating tumor cells from blood samples
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983925/
https://www.ncbi.nlm.nih.gov/pubmed/29620284
http://dx.doi.org/10.3892/or.2018.6342
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