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按需纳升级微流控液滴生成、注入和混合采用被动微流控器件。

On demand nanoliter-scale microfluidic droplet generation, injection, and mixing using a passive microfluidic device.

机构信息

Faculty of Chemistry and Biochemistry, Microsystems Chemistry and BioIT (BioMIP), Ruhr-University Bochum , 44780 Bochum, Germany.

出版信息

Biomicrofluidics. 2015 Feb 12;9(1):014119. doi: 10.1063/1.4907895. eCollection 2015 Jan.

Abstract

We here present and characterize a programmable nanoliter scale droplet-on-demand device that can be used separately or readily integrated into low cost single layer rapid prototyping microfluidic systems for a wide range of user applications. The passive microfluidic device allows external (off-the-shelf) electronically controlled pinch valves to program the delivery of nanoliter scale aqueous droplets from up to 9 different inputs to a central outlet channel. The inputs can be either continuous aqueous fluid streams or microliter scale aqueous plugs embedded in a carrier fluid, in which case the number of effective input solutions that can be employed in an experiment is no longer strongly constrained (100 s-1000 s). Both nanoliter droplet sequencing output and nanoliter-scale droplet mixing are reported with this device. Optimization of the geometry and pressure relationships in the device was achieved in several hardware iterations with the support of open source microfluidic simulation software and equivalent circuit models. The requisite modular control of pressure relationships within the device is accomplished using hydrodynamic barriers and matched resistance channels with three different channel heights, custom parallel reversible microfluidic I/O connections, low dead-volume pinch valves, and a simply adjustable array of external screw valves. Programmable sequences of droplet mixes or chains of droplets can be achieved with the device at low Hz frequencies, limited by device elasticity, and could be further enhanced by valve integration. The chip has already found use in the characterization of droplet bunching during export and the synthesis of a DNA library.

摘要

我们在此展示并描述了一种可编程的纳升级按需液滴装置,可单独使用或轻松集成到低成本单层快速原型微流控系统中,以满足广泛的用户应用需求。该无源微流控装置允许外部(现成的)电控夹管阀对纳升级液滴的输送进行编程,可从多达 9 个不同的输入口输送至中央出口通道。输入口可以是连续的水性流体流,也可以是嵌入载液中的微升级水栓,在这种情况下,实验中可使用的有效输入溶液的数量不再受到强烈限制(100 s-1000 s)。该装置可实现纳升级液滴序列输出和纳升级液滴混合。在开源微流控模拟软件和等效电路模型的支持下,通过多次硬件迭代优化了设备的几何形状和压力关系。通过使用水力屏障和匹配的阻力通道(具有三种不同的通道高度)、定制的并联可逆微流控 I/O 连接、低死体积夹管阀以及简单可调的外部螺杆阀阵列,实现了设备内部压力关系的模块化控制。通过该装置可以以低 Hz 频率实现液滴混合的可编程序列或液滴链,受限于装置的弹性,通过阀集成还可以进一步提高。该芯片已经在出口过程中液滴聚集的特性研究和 DNA 文库的合成中得到了应用。

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