Delft University of Technology, Faculty of Applied Sciences, Department of Chemical Engineering, van der Maasweg 9, 2629 HZ, Delft, The Netherlands.
Lab Chip. 2020 Apr 21;20(8):1398-1409. doi: 10.1039/c9lc01103j. Epub 2020 Apr 7.
We developed a microfluidic droplet on-demand (DoD) generator that enables the production of droplets with a volume solely governed by the geometry of the generator for a range of operating conditions. The prime reason to develop this novel type of DoD generator is that its robustness in operation enables scale out and operation under non-steady conditions, which are both essential features for the further advancement of droplet-based assays. We first detail the working principle of the DoD generator and study the sensitivity of the volume of the generated droplets with respect to the used fluids and control parameters. We next compare the performance of our DoD generator when scaled out to 8 parallel generators to the performance of a conventional DoD generator in which the droplet volume is not geometry-controlled, showing its superior performance. Further scale out to 64 parallel DoD generators shows that all generators produce droplets with a volume between 91% and 105% of the predesigned volume. We conclude the paper by presenting a simple droplet-based assay in which the DoD generator enables sequential supply of reagent droplets to a droplet stored in the device, illustrating its potential to be used in droplet-based assays for biochemical studies under non-steady operation conditions.
我们开发了一种微流控按需(DoD)微滴生成器,可根据生成器的几何形状来生成微滴,而微滴的体积仅受操作条件的影响。开发这种新型 DoD 发生器的主要原因是,它的操作稳健性使其能够扩展规模并在非稳态条件下运行,这对于基于液滴的分析的进一步发展都是必不可少的特征。我们首先详细介绍 DoD 发生器的工作原理,并研究所使用的流体和控制参数对生成的微滴体积的灵敏度。接下来,我们将我们的 DoD 发生器扩展到 8 个并行发生器的性能与传统的 DoD 发生器的性能进行比较,传统的 DoD 发生器的微滴体积不受几何形状控制,从而展示其优越的性能。进一步扩展到 64 个并行的 DoD 发生器,结果表明所有的发生器都能生成体积在预定体积的 91%到 105%之间的微滴。最后,我们通过一个简单的基于液滴的分析实验来说明 DoD 发生器的功能,即在设备中存储的液滴中顺序供应试剂液滴,这表明它有潜力在非稳态操作条件下用于生化研究的基于液滴的分析实验中。