C. Eugene Bennett Department of Chemistry, West Virginia University, Morgantown, WV, 26506, USA.
C. Eugene Bennett Department of Chemistry, West Virginia University, Morgantown, WV, 26506, USA.
Biosens Bioelectron. 2021 Nov 1;191:113458. doi: 10.1016/j.bios.2021.113458. Epub 2021 Jun 24.
Monodisperse droplet has been widely used as a versatile tool in different disciplines including biosensing. Existing methods still struggle to balance the droplet generation performance with system simplicity. Here we introduce a novel droplet generation scheme based on the acoustic streaming generated from a vibrating sharp-tip capillary. The unique fluid pattern enables efficient droplet generation without any external pressure sources. This method achieved real-time modulation of droplet size over an ultra-wide range (6.77-661 μm), high throughput (up to 5000 droplets/s), and good monodispersity (<4%) with a power consumption below 60 mW. This method has enabled a multi-volume digital PCR with a dynamic range of ~6 orders of magnitude and multiplexing capability. It has also enabled a simple protocol to produce cell-laden alginate microcapsules in variable sizes with excellent biocompatibility. Overall, the present method combines high performance with small footprint and portability, which will be especially valuable for droplet applications requiring variable droplet size and performed in resource-limited settings.
单分散液滴已被广泛应用于包括生物传感在内的多个学科领域,作为一种多功能工具。现有的方法仍然难以在滴液生成性能和系统简单性之间取得平衡。在这里,我们介绍了一种基于振动尖锐毛细管产生的声流的新型液滴生成方案。独特的流体图案使无需任何外部压力源即可实现高效的液滴生成。该方法实现了超宽范围(6.77-661μm)、高通量(高达 5000 个/秒)和良好的单分散性(<4%)的实时液滴尺寸调制,功率消耗低于 60mW。该方法实现了具有约 6 个数量级动态范围和多路复用能力的多体积数字 PCR。它还实现了一种简单的方案,可在不同大小的海藻酸钠微胶囊中产生具有出色生物相容性的细胞。总的来说,本方法结合了高性能、小尺寸和便携性,这对于需要可变液滴尺寸且在资源有限的环境中进行的液滴应用将特别有价值。