Department of Electrical and Computer Engineering, Concordia University, Montréal, Québec, Canada.
Lab Chip. 2019 Jan 29;19(3):524-535. doi: 10.1039/c8lc01170b.
Droplet microfluidics is a technique that has the ability to compartmentalize reactions in sub nano- (or pico-) liter volumes that can potentially enable millions of distinct biological assays to be performed on individual cells. In a typical droplet microfluidic system, droplets are manipulated by pressure-based flows. This has limited the fluidic operations that can be performed in these devices. Digital microfluidics is an alternative microfluidic paradigm with precise control and manipulation over individual droplets. Here, we implement an integrated droplet-digital microfluidic (which we call 'ID2M') system in which common fluidic operations (i.e. droplet generation, cell encapsulation, droplet merging and mixing, droplet trapping and incubation, and droplet sorting) can be performed. With the addition of electrodes, we have been able to create droplets on-demand, tune their volumes on-demand, and merge and mix several droplets to produce a dilution series. Moreover, this device can trap and incubate droplets for 24 h that can consequently be sorted and analyzed in multiple n-ary channels (as opposed to typical binary channels). The ID2M platform has been validated as a robust on-demand screening system by sorting fluorescein droplets of different concentration with an efficiency of ∼96%. The utility of the new system is further demonstrated by culturing and sorting tolerant yeast mutants and wild-type yeast cells in ionic liquid based on their growth profiles. This new platform for both droplet and digital microfluidics has the potential to be used for screening different conditions on-chip and for applications like directed evolution.
液滴微流控技术能够将反应分隔在亚纳升(或皮升)体积的微空间中,从而有可能在单个细胞上进行数百万种不同的生物分析。在典型的液滴微流控系统中,液滴是通过基于压力的流来操纵的。这限制了可以在这些设备中执行的流体操作。数字微流控是一种替代的微流控范例,可以对单个液滴进行精确控制和操作。在这里,我们实现了一种集成的液滴-数字微流控(我们称之为“ID2M”)系统,其中可以执行常见的流体操作(即液滴生成、细胞封装、液滴合并和混合、液滴捕获和孵育以及液滴分选)。通过添加电极,我们能够按需生成液滴、按需调整液滴体积,并合并和混合多个液滴以产生稀释系列。此外,该设备可以捕获和孵育液滴 24 小时,随后可以在多个 n 元通道(而不是典型的二元通道)中进行分选和分析。ID2M 平台已通过以约 96%的效率对不同浓度的荧光素液滴进行排序,被验证为一种稳健的按需筛选系统。通过基于其生长曲线在离子液体中培养和分选耐受突变体酵母和野生型酵母细胞,进一步证明了新系统的实用性。该用于液滴和数字微流控的新平台具有在芯片上筛选不同条件以及用于定向进化等应用的潜力。