Navi Maryam, Abbasi Niki, Salari Alinaghi, Tsai Scott S H
Biomicrofluidics. 2020 Mar 4;14(2):024101. doi: 10.1063/1.5144137. eCollection 2020 Mar.
A major barrier to the clinical utilization of microfluidically generated water-in-oil droplets is the cumbersome washing steps required to remove the non-biocompatible organic oil phase from the droplets. In this paper, we report an on-chip magnetic water-in-water droplet generation and manipulation platform using a biocompatible aqueous two-phase system of a polyethylene glycol-polypropylene glycol-polyethylene glycol triblock copolymer (PEG-PPG-PEG) and dextran (DEX), eliminating the need for subsequent washing steps. By careful selection of a ferrofluid that shows an affinity toward the DEX phase (the dispersed phase in our microfluidic device), we generate magnetic DEX droplets in a non-magnetic continuous phase of PEG-PPG-PEG. We apply an external magnetic field to manipulate the droplets and sort them into different outlets. We also perform scaling analysis to model the droplet deflection and find that the experimental data show good agreement with the model. We expect that this type of all-biocompatible magnetic droplet microfluidic system will find utility in biomedical applications, such as long-term single cell analysis. In addition, the model can be used for designing experimental parameters to achieve a desired droplet trajectory.
微流控产生的油包水液滴在临床应用中的一个主要障碍是需要繁琐的洗涤步骤来从液滴中去除非生物相容性的有机油相。在本文中,我们报道了一种基于芯片的磁控水包水液滴生成与操控平台,该平台使用聚乙二醇-聚丙二醇-聚乙二醇三嵌段共聚物(PEG-PPG-PEG)和葡聚糖(DEX)组成的生物相容性双水相体系,无需后续洗涤步骤。通过精心选择对DEX相(我们微流控装置中的分散相)具有亲和力的铁磁流体,我们在PEG-PPG-PEG的非磁性连续相中生成磁性DEX液滴。我们施加外部磁场来操控液滴并将它们分类到不同的出口。我们还进行了尺度分析以对液滴偏转进行建模,发现实验数据与模型吻合良好。我们期望这种全生物相容性的磁控液滴微流控系统将在生物医学应用中找到用途,例如长期单细胞分析。此外,该模型可用于设计实验参数以实现所需的液滴轨迹。