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Micro vapor bubble jet flow for safe and high-rate fluorescence-activated cell sorting
Author(s) -
Koen de Wijs,
Chengxun Liu,
Alexandra Dusa,
Dries Vercruysse,
Bivragh Majeed,
Deniz Sabuncuoglu Tezcan,
Kamil Blaszkiewicz,
Roger Loo,
Liesbet Lagae
Publication year - 2017
Publication title -
lab on a chip
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.064
H-Index - 210
eISSN - 1473-0197
pISSN - 1473-0189
DOI - 10.1039/c6lc01560c
Subject(s) - sorting , bubble , jet (fluid) , cell sorting , volumetric flow rate , fluorescence , materials science , flow cytometry , chemistry , nanotechnology , mechanics , biology , physics , computer science , optics , microbiology and biotechnology , programming language
Safe, high-rate and cost-effective cell sorting is important for clinical cell isolation. However, commercial fluorescence-activated cell sorters (FACS) are expensive and prone to aerosol-induced sample contamination. Here we report a microfluidic cell sorter allowing high rate and fully enclosed cell sorting. The sorter chip consists of an array of micro heating hotspots. Pulsed resistive heating in the hotspots produces numerous micro vapor bubbles with short duration, which gives rise to a rapid jet flow for cell sorting. With this method, we demonstrated high sorting rate comparable to commercial FACS and the significant enrichment of rare cancer cells. This vapor bubble based cell sorting method can be a powerful tool for contamination-free and affordable clinical cell sorting such as circulating tumor cell isolation and cancer cell therapy.

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