Zhang Han, Huang Can, Li Yuwen, Gupte Rohit, Samuel Ryan, Dai Jing, Guzman Adrian, Sabnis Rushant, de Figueiredo Paul, Han Arum
Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX 77843, USA.
Department of Biomedical Engineering, Texas A&M University, College Station, TX 77843, USA.
Sci Adv. 2022 Jul 8;8(27):eabc9108. doi: 10.1126/sciadv.abc9108.
Droplet microfluidic systems have been widely deployed to interrogate biological and chemical systems. The major limitations of these systems are the relatively high error rates from critical droplet manipulation functions. To address these limitations, we describe the development of FIDELITY (Flotation and Interdigitated electrode forces on Droplets to Enable Lasting system IntegriTY), a highly sensitive and accurate size-based droplet bandpass filter that leverages the natural buoyancy of aqueous droplets and highly localized dielectrophoretic force generated by interdigitated electrode arrays. Droplet manipulation accuracies greater than 99% were achieved at a throughput of up to 100 droplets/s and separation of droplets that differed in diameter by only 6 μm was demonstrated. Last, the utility of FIDELITY was demonstrated in a droplet size quality control application and also in a droplet-based in vitro transcription/translation workflow. We anticipate FIDELITY to be integrated into a broad range of droplet microfluidic configurations to achieve exceptional operational accuracy.
液滴微流控系统已被广泛应用于生物和化学系统的研究。这些系统的主要局限性在于关键液滴操控功能的错误率相对较高。为了解决这些局限性,我们描述了FIDELITY(基于液滴的浮选和叉指电极力实现持久系统完整性)的开发,这是一种高度灵敏且精确的基于尺寸的液滴带通滤波器,它利用了水滴的自然浮力和叉指电极阵列产生的高度局部化介电泳力。在高达100个液滴/秒的通量下,实现了大于99%的液滴操控精度,并证明了能够分离直径仅相差6μm的液滴。最后,在液滴尺寸质量控制应用以及基于液滴的体外转录/翻译工作流程中展示了FIDELITY的实用性。我们预计FIDELITY将被集成到广泛的液滴微流控配置中,以实现卓越的操作精度。