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基于表面声波按需生成皮升级液滴和包裹粒子。

Surface acoustic waves for on-demand production of picoliter droplets and particle encapsulation.

机构信息

Department of Mechanical and Aerospace Engineering, Monash University, Clayton, VIC 3800, Australia.

出版信息

Lab Chip. 2013 Aug 21;13(16):3225-31. doi: 10.1039/c3lc50372k. Epub 2013 Jun 19.

Abstract

Microscopic water-in-oil droplets are a versatile chemical and biological platform whose dimensions result in short reaction times and require minuscule amounts of reagent. Methods exist for the production of droplets, though the vast majority are only able to do so in continuous flows, restricting the ability to independently control reactions of individual droplets, a prerequisite for programmable digital microfluidics. Here we present a novel method to produce individual picoliter-scale droplets on-demand using surface acoustic waves (SAW). Acoustic forces arising from SAW act on the oil-water interface, creating a droplet whose volume is defined by the applied power, duration of the force and system geometry. Additionally, this method is able to pre-concentrate particles simultaneously with droplet production, meaning that particles and cells, even if in a dilute mixture, can be easily encapsulated. Our method is expected to be applicable to high-throughput screening, bioreactor creation and other microfluidic processes.

摘要

微小的油包水乳滴是一种多功能的化学和生物学平台,其尺寸导致反应时间短,所需试剂的量极小。虽然已经存在产生液滴的方法,但绝大多数方法只能在连续流中进行,这限制了独立控制单个液滴反应的能力,而这是可编程数字微流控的前提。在这里,我们提出了一种使用表面声波(SAW)按需产生单个皮升级规模液滴的新方法。由 SAW 产生的声力作用于油水界面,产生一个液滴,其体积由施加的功率、力的持续时间和系统几何形状决定。此外,这种方法能够在产生液滴的同时预浓缩颗粒,这意味着即使在稀释的混合物中,颗粒和细胞也可以很容易地被包裹。我们的方法有望适用于高通量筛选、生物反应器的创建和其他微流控过程。

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