| Literature DB >> 27870841 |
Mahla Poudineh1, Peter M Aldridge2, Sharif Ahmed3, Brenda J Green2, Leyla Kermanshah2, Vivian Nguyen3, Carmen Tu3, Reza M Mohamadi3, Robert K Nam4, Aaron Hansen5, Srikala S Sridhar5, Antonio Finelli5, Neil E Fleshner5, Anthony M Joshua5, Edward H Sargent1, Shana O Kelley2,3,6.
Abstract
Profiling the heterogeneous phenotypes of rare circulating tumour cells (CTCs) in whole blood is critical to unravelling the complex and dynamic properties of these potential clinical markers. This task is challenging because these cells are present at parts per billion levels among normal blood cells. Here we report a new nanoparticle-enabled method for CTC characterization, called magnetic ranking cytometry, which profiles CTCs on the basis of their surface expression phenotype. We achieve this using a microfluidic chip that successfully processes whole blood samples. The approach classifies CTCs with single-cell resolution in accordance with their expression of phenotypic surface markers, which is read out using magnetic nanoparticles. We deploy this new technique to reveal the dynamic phenotypes of CTCs in unprocessed blood from mice as a function of tumour growth and aggressiveness. We also test magnetic ranking cytometry using blood samples collected from cancer patients.Entities:
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Year: 2016 PMID: 27870841 DOI: 10.1038/nnano.2016.239
Source DB: PubMed Journal: Nat Nanotechnol ISSN: 1748-3387 Impact factor: 39.213