Whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells
The current FDA-approved whole blood stabilization method for circulating tumor cell (CTC) isolation suffers from RNA degradation. Here the authors combine hypothermic preservation and antiplatelet strategies to stabilize whole blood up to 72 h without compromising CTC yield and RNA integrity.
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Nature Portfolio
2017
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oai:doaj.org-article:2cb65508990f455f91b7d509541cd82f2021-12-02T14:40:33ZWhole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells10.1038/s41467-017-01705-y2041-1723https://doaj.org/article/2cb65508990f455f91b7d509541cd82f2017-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01705-yhttps://doaj.org/toc/2041-1723The current FDA-approved whole blood stabilization method for circulating tumor cell (CTC) isolation suffers from RNA degradation. Here the authors combine hypothermic preservation and antiplatelet strategies to stabilize whole blood up to 72 h without compromising CTC yield and RNA integrity.Keith H. K. WongShannon N. TessierDavid T. MiyamotoKathleen L. MillerLauren D. BookstaverThomas R. CareyCleo J. StannardVishal ThaparEric C. TaiKevin D. VoErin S. EmmonsHaley M. PleskowRebecca D. SandlinLecia V. SequistDavid T. TingDaniel A. HaberShyamala MaheswaranShannon L. StottMehmet TonerNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017) |
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Science Q |
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Science Q Keith H. K. Wong Shannon N. Tessier David T. Miyamoto Kathleen L. Miller Lauren D. Bookstaver Thomas R. Carey Cleo J. Stannard Vishal Thapar Eric C. Tai Kevin D. Vo Erin S. Emmons Haley M. Pleskow Rebecca D. Sandlin Lecia V. Sequist David T. Ting Daniel A. Haber Shyamala Maheswaran Shannon L. Stott Mehmet Toner Whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells |
description |
The current FDA-approved whole blood stabilization method for circulating tumor cell (CTC) isolation suffers from RNA degradation. Here the authors combine hypothermic preservation and antiplatelet strategies to stabilize whole blood up to 72 h without compromising CTC yield and RNA integrity. |
format |
article |
author |
Keith H. K. Wong Shannon N. Tessier David T. Miyamoto Kathleen L. Miller Lauren D. Bookstaver Thomas R. Carey Cleo J. Stannard Vishal Thapar Eric C. Tai Kevin D. Vo Erin S. Emmons Haley M. Pleskow Rebecca D. Sandlin Lecia V. Sequist David T. Ting Daniel A. Haber Shyamala Maheswaran Shannon L. Stott Mehmet Toner |
author_facet |
Keith H. K. Wong Shannon N. Tessier David T. Miyamoto Kathleen L. Miller Lauren D. Bookstaver Thomas R. Carey Cleo J. Stannard Vishal Thapar Eric C. Tai Kevin D. Vo Erin S. Emmons Haley M. Pleskow Rebecca D. Sandlin Lecia V. Sequist David T. Ting Daniel A. Haber Shyamala Maheswaran Shannon L. Stott Mehmet Toner |
author_sort |
Keith H. K. Wong |
title |
Whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells |
title_short |
Whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells |
title_full |
Whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells |
title_fullStr |
Whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells |
title_full_unstemmed |
Whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells |
title_sort |
whole blood stabilization for the microfluidic isolation and molecular characterization of circulating tumor cells |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/2cb65508990f455f91b7d509541cd82f |
work_keys_str_mv |
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1718390225181343744 |