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首页> 外文期刊>Lab on a chip >Fluorescence-activated droplet sorting (FADS): efficient microfluidic cell sorting based on enzymatic activity
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Fluorescence-activated droplet sorting (FADS): efficient microfluidic cell sorting based on enzymatic activity

机译:荧光激活液滴分选(FADS):基于酶活性的有效微流细胞分选

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摘要

We describe a highly efficient microfluidic fluorescence-activated droplet sorter (FADS) combining many of the advantages of microtitre-plate screening and traditional fluorescence-activated cell sorting (FACS). Single cells are compartmentalized in emulsion droplets, which can be sorted using dielectrophoresis in a fluorescence-activated manner (as in FACS) at rates up to 2000 droplets s~(-1). To validate the system, mixtures of E. coli cells, expressing either the reporter enzyme β-galactosidase or an inactive variant, were compartmentalized with a fluorogenic substrate and sorted at rates of ~300 droplets s~(-1). The false positive error rate of the sorter at this throughput was <1 in 104 droplets. Analysis of the sorted cells revealed that the primary limit to enrichment was the co-encapsulation of E. coli cells, not sorting errors: a theoretical model based on the Poisson distribution accurately predicted the observed enrichment values using the starting cell density (cells per droplet) and the ratio of active to inactive cells. When the cells were encapsulated at low density (~1 cell for every 50 droplets), sorting was very efficient and all of the recovered cells were the active strain. In addition, single active droplets were sorted and cells were successfully recovered.
机译:我们描述了一种高效的微流控荧光激活液滴分选仪(FADS),结合了微量滴定板筛选和传统荧光激活细胞分选(FACS)的许多优点。单细胞在乳状液小滴中分隔,可使用介电电泳以荧光激活的方式(如FACS)以高达2000个小滴s〜(-1)的速率进行分选。为了验证该系统,将表达报告酶β-半乳糖苷酶或无活性变异体的大肠杆菌细胞混合物与荧光底物区分开,并以〜300滴s〜(-1)的速率进行分选。在此吞吐量下,分拣器的误报率在104个液滴中小于1。对分选细胞的分析表明,富集的主要限制是大肠杆菌细胞的共包封,而不是分选错误:基于泊松分布的理论模型使用起始细胞密度(每滴细胞数)准确预测了观察到的富集值)以及活动与不活动单元的比率。当将细胞以低密度封装时(每50滴〜1个细胞),分选非常有效,所有回收的细胞均为活性菌株。此外,将单个活性小滴进行分选并成功回收了细胞。

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