Biomedical Engineering Department, Wayne State University, Detroit, MI, USA.
Lab Chip. 2010 Sep 21;10(18):2433-42. doi: 10.1039/c004768f. Epub 2010 Aug 18.
The desire to make microfluidic technology more accessible to the biological research community has led to the notion of "modular microfluidics", where users can build a fluidic system using a toolkit of building blocks. This paper applies a modular approach for performing droplet-based screening, including the four integral steps of library generation, storage, mixing, and optical interrogation. Commercially available cross-junctions are used for drop generation, flexible capillary tubing for storage, and tee-junctions for serial mixing. Optical interrogation of the drops is achieved using fiber-optic detection modules which can be incorporated inline at one or more points in the system. Modularity enables the user to hand-assemble systems for functional assays or applications. Three examples are shown: (1) a "mix and read" assay commonly used in high throughput screening (HTS); (2) generation of chemically distinct droplets using microfractionation in droplets (microFD); and (3) in situ encapsulation and culture of eukaryotes. Using components with IDs ranging from 150 microm to 1.5 mm, this approach can accommodate drop assays with volumes ranging from 2 nL to 2 microL, and storage densities ranging from 300 to 3000 drops per metre tubing. Generation rates are up to 200 drops per second and merging rates are up to 10 drops per second. The impact of length scale, carrier fluid viscosity, and flow rates on system performance is considered theoretically and illustratively using 2D CFD simulations. Due to its flexibility, the widespread availability of components, and some favorable material properties compared to PDMS, this approach can be a useful part of a researcher's toolkit for prototyping droplet-based assays.
为了使微流控技术更容易被生物研究界所接受,人们提出了“模块化微流控”的概念,即用户可以使用一组构建模块来构建流体系统。本文应用模块化方法进行基于液滴的筛选,包括文库生成、存储、混合和光学检测这四个基本步骤。商用的十字交叉接头用于液滴生成,柔性毛细管用于存储,T 型接头用于连续混合。使用光纤检测模块对液滴进行光学检测,该模块可以在系统中的一个或多个点进行在线集成。模块化使用户能够手动组装用于功能测定或应用的系统。展示了三个示例:(1)高通量筛选(HTS)中常用的“混合和读取”测定法;(2)使用液滴微分区(microFD)生成化学上不同的液滴;(3)真核生物的原位包封和培养。使用 ID 范围为 150 微米至 1.5 毫米的组件,该方法可以容纳体积为 2 纳升至 2 微升、存储密度为每米管 300 至 3000 个液滴的液滴测定法。生成速率高达每秒 200 个液滴,合并速率高达每秒 10 个液滴。使用二维 CFD 模拟从理论和说明性两方面考虑了长度尺度、载体流体粘度和流速对系统性能的影响。由于其灵活性、组件的广泛可用性以及与 PDMS 相比具有一些有利的材料特性,这种方法可以成为研究人员基于液滴的测定法原型设计工具包的有用组成部分。