Cell sorting actuated by a microfluidic inertial vortex
The sorting of specific cell populations is an established tool in biological research, with new applications demanding greater cell throughput, sterility and elimination of cross-contamination. Here we report 'vortex-actuated cell sorting' (VACS), a new technique that deflects cells indiv...
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Veröffentlicht in: | Lab on a chip 2019-07, Vol.19 (14), p.2456-2465 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The sorting of specific cell populations is an established tool in biological research, with new applications demanding greater cell throughput, sterility and elimination of cross-contamination. Here we report 'vortex-actuated cell sorting' (VACS), a new technique that deflects cells individually,
via
the generation of a transient microfluidic vortex by a thermal vapour bubble: a novel mechanism, which is able to sort cells based on fluorescently-labelled molecular markers. Using
in silico
simulation and experiments on beads, an immortal cell line and human peripheral blood mononuclear cells (PBMCs), we demonstrate high-purity and high-recovery sorting with input rates up to 10
4
cells per s and switching speeds comparable to existing techniques (>40 kHz). A tiny footprint (1 × 0.25 mm) affords miniaturization and the potential to achieve multiplexing: a crucial step in increasing processing rate. Simple construction using biocompatible materials potentially minimizes cost of fabrication and permits single-use sterile cartridges. We believe VACS potentially enables parallel sorting at throughputs relevant to cell therapy, liquid biopsy and phenotypic screening.
Vortex-actuated cell sorting: a new cell sorter, based on a transient microfluidic vortex generated by a thermal vapour bubble. |
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ISSN: | 1473-0197 1473-0189 |
DOI: | 10.1039/c9lc00120d |