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10.1021/acs.analchem.5b02398

http://scihub22266oqcxt.onion/10.1021/acs.analchem.5b02398
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C4888785!4888785!26331909
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suck abstract from ncbi

pmid26331909      Anal+Chem 2015 ; 87 (24): 12051-8
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  • Acoustofluidic Fluorescence Activated Cell Sorter #MMPMID26331909
  • Nawaz AA; Chen Y; Nama N; Nissly RH; Ren L; Ozcelik A; Wang L; McCoy JP; Levine SJ; Huang TJ
  • Anal Chem 2015[Dec]; 87 (24): 12051-8 PMID26331909show ga
  • Selective isolation of cell subpopulations with defined biological characteristics is crucial for many biological studies and clinical applications. In this work, we present the development of an acoustofluidic fluorescence activated cell sorting (FACS) device that simultaneously performs on-demand, high-throughput, high-resolution cell detection and sorting, integrated onto a single chip. Our acoustofluidic FACS device uses the ?microfluidic drifting? technique to precisely focus cells/particles three dimensionally and achieves a flow of single-file particles/cells as they pass through a laser interrogation region. We then utilize short bursts (150 ?s) of standing surface acoustic waves (SSAW) triggered by an electronic feedback system to sort fluorescently labeled particles/cells with desired biological properties. We have demonstrated continuous isolation of fluorescently labeled HeLa cells from unlabeled cells at a throughput of ~1200 events/s with a purity reaching 92.3 ± 3.39%. Furthermore, 99.18% postsort cell viability indicates that our acoustofluidic sorting technique maintains a high integrity of cells. Therefore, our integrated acoustofluidic FACS device is demonstrated to achieve two-way cell sorting with high purity, biocompatibility, and biosafety. We believe that our device has significant potential for use as a low-cost, high-performance, portable, and user-friendly FACS instrument.
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