We describe the design, fabrication and use of a dual-layered microfluidic device for ultrahigh-throughput droplet trapping, analysis, and recovery using droplet buoyancy. To demonstrate the utility of this device for digital quantification of analytes, we quantify the number of droplets, which contain a β-galactosidase-conjugated bead among more than 100,000 immobilized droplets. In addition, we demonstrate that this device can be used for droplet clustering and real-time analysis by clustering several droplets together into microwells and monitoring diffusion of fluorescein, a product of the enzymatic reaction of β-galactosidase and its fluorogenic substrate FDG, between droplets.
Floating Droplet Array: An Ultrahigh-Throughput Device for Droplet Trapping, Real-time Analysis and Recovery.
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作者:Labanieh Louai, Nguyen Thi N, Zhao Weian, Kang Dong-Ku
| 期刊: | Micromachines | 影响因子: | 3.000 |
| 时间: | 2015 | 起止号: | 2015 Oct;6(10):1469-1482 |
| doi: | 10.3390/mi6101431 | ||
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