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Label-Free and Continuous-Flow Ferrohydrodynamic Separation of HeLa Cells and Blood Cells in Biocompatible Ferrofluids.


ABSTRACT: In this study, a label-free, low-cost, and fast ferrohydrodynamic cell separation scheme is demonstrated using HeLa cells (an epithelial cell line) and red blood cells. The separation is based on cell size difference, and conducted in a custom-made biocompatible ferrofluid that retains the viability of cells during and after the assay for downstream analysis. The scheme offers moderate-throughput (?106 cells h-1 for a single channel device) and extremely high recovery rate (>99%) without the use of any label. It is envisioned that this separation scheme will have clinical applications in settings where rapid cell enrichment and removal of contaminating blood will improve efficiency of screening and diagnosis such as cervical cancer screening based on mixed populations in exfoliated samples.

SUBMITTER: Zhao W 

PROVIDER: S-EPMC4963013 | biostudies-literature | 2016 Jun

REPOSITORIES: biostudies-literature

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Label-Free and Continuous-Flow Ferrohydrodynamic Separation of HeLa Cells and Blood Cells in Biocompatible Ferrofluids.

Zhao Wujun W   Zhu Taotao T   Cheng Rui R   Liu Yufei Y   He Jian J   Qiu Hong H   Wang Lianchun L   Nagy Tamas T   Querec Troy D TD   Unger Elizabeth R ER   Mao Leidong L  

Advanced functional materials 20151207 22


In this study, a label-free, low-cost, and fast ferrohydrodynamic cell separation scheme is demonstrated using HeLa cells (an epithelial cell line) and red blood cells. The separation is based on cell size difference, and conducted in a custom-made biocompatible ferrofluid that retains the viability of cells during and after the assay for downstream analysis. The scheme offers moderate-throughput (≈10<sup>6</sup> cells h<sup>-1</sup> for a single channel device) and extremely high recovery rate  ...[more]

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