Micro-Nano Innovations (MiNI) Laboratory, Department of Biomedical Engineering, University of California, Davis, CA 95616, USA.
Lab Chip. 2021 Feb 7;21(3):502-512. doi: 10.1039/d0lc00896f. Epub 2020 Nov 13.
Infusion pumps have been widely used in clinical settings for the administration of medications and fluids. We present the digital droplet infusion (DDI) device, a low-cost, high-precision digital infusion system, utilizing a microfluidic discretization unit to convert continuous flow into precisely delivered droplet aliquots and a valving unit to control the duration and frequency of flow discretization. The DDI device relies on a distinct capillarity-dominated process of coalescence and pinch-off of droplets for flow digitization, which is monitored by a pair of conductive electrodes located before and after the junction. The digital feedback-controlled flow rate can be employed to adjust a solenoid valve for refined infusion management. With this unique digital microfluidic approach, the DDI technology enables a simple yet powerful infusion system with an ultrahigh resolution of digital droplet transfer volume, as small as 57 nL, which is three orders of magnitude lower than that of clinical standard infusion pumps, as well as a wide range of digitally adjustable infusion rates ranging from 0.1 mL h to 10 mL h, in addition to an array of programmable infusion profiles and safety features. Its modular design enables fast assembly using only off-the-shelf and 3D-printed components. Overall, benefiting from its simple device architecture and excellent infusion performance, the DDI technology has great potential to become the next-generation clinical standard for drug delivery with its high precision and ultimate portability at a low cost.
输液泵在临床环境中被广泛用于药物和液体的给药。我们提出了数字液滴输注(DDI)装置,这是一种低成本、高精度的数字输注系统,利用微流控离散化单元将连续流转换为精确输送的液滴等分试样,并利用阀单元来控制流离散化的持续时间和频率。DDI 装置依赖于液滴合并和断开的独特毛细主导过程来进行流量数字化,这由位于连接点前后的一对导电电极进行监测。数字反馈控制的流速可用于调整电磁阀以实现精细的输注管理。采用这种独特的数字微流控方法,DDI 技术实现了一种简单而强大的输注系统,具有超高的数字液滴转移体积分辨率,低至 57nL,比临床标准输液泵低三个数量级,还具有广泛的数字可调输注率范围,从 0.1mL/h 到 10mL/h,以及一系列可编程输注方案和安全功能。其模块化设计仅使用现成的和 3D 打印的组件即可快速组装。总的来说,DDI 技术受益于其简单的设备架构和出色的输注性能,具有成为下一代临床药物输送标准的巨大潜力,具有高精度和最终的便携性,成本低廉。