Microreactions using nanoliter droplets with oil encapsulation

Chuang-yuan Lee, Hongyu Yu, E. S. Kim
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引用次数: 4

Abstract

This paper reports a microreaction technology for biochemical assay using nanoliter droplets encapsulated inside oil droplets. Microreaction chambers are constructed on a glass substrate by accumulating oil droplets that are dispensed by the directional droplet ejector. Droplets of different aqueous reagents are then directionally ejected into the oil microchambers for parallel and combinatory analysis. Because the reagents are encapsulated in oil, the evaporation rate is greatly reduced, and only small amount of reagents are required. The microchamber size and reagent amount are digitally controlled by the number of ejected oil and reagent droplets, respectively. Ejectors for oil and reagents have been integrated on a single chip so that each assay is performed efficiently without any mechanical movement and alignment. We have carried out both physical and chemical microreactions with this method, and observed negligible difference (in response) from conventional macroreactions.
微反应用纳升液滴油包封
本文报道了一种将纳升液滴包裹在油滴内进行生化检测的微反应技术。微反应室是通过积聚由定向液滴喷射器分配的油滴在玻璃基板上构建的。然后将不同含水试剂的液滴定向喷射到油微室中进行平行和组合分析。由于试剂被包裹在油中,蒸发速度大大降低,只需要少量的试剂。微室尺寸和试剂量分别通过喷射油滴数和试剂滴数进行数字控制。用于油和试剂的喷射器已集成在单个芯片上,因此每次分析都有效地执行,而无需任何机械运动和校准。我们已经用这种方法进行了物理和化学微反应,并且观察到与常规宏观反应的差异可以忽略不计(响应)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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