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High aspect ratio induced spontaneous generation of monodisperse picolitre droplets for digital PCR

机译:高长宽比诱导自发产生单分散皮微滴用于数字PCR

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摘要

Droplet microfluidics, which involves micrometer-sized emulsion droplets on a microfabricated platform, has been demonstrated as a unique system for many biological and chemical applications. Robust and scalable generation of monodisperse droplets at high throughput is of fundamental importance for droplet microfluidics. Classic designs for droplet generation employ shear fluid dynamics to induce the breakup of droplets in a two-phase flow and the droplet size is sensitive to flow rate fluctuations, often resulting in polydispersity. In this paper, we show spontaneous emulsification by a high aspect ratio (>3.5) rectangular nozzle structure. Due to the confinement and abrupt change of the structure, a Laplace pressure difference is generated between the dispersed and continuous phases, and causes the thread thinning and droplet pinch-off without the need to precisely control external flow conditions. A high-throughput droplet generator was developed by parallelization of a massive number of the basic structures. This device enabled facile and rapid partition of aqueous samples into millions of uniform picolitre droplets in oil. Using this device, on-chip droplet-based digital polymerase chain reaction (PCR) was performed for absolute quantification of rare genes with a wide dynamic range.
机译:液滴微流体技术涉及在微细加工平台上的微米级乳剂液滴,已被证明是用于许多生物和化学应用的独特系统。对于液滴微流体,以高通量稳定且可扩展地产生单分散液滴至关重要。用于液滴生成的经典设计采用剪切流体动力学来诱导两相流中的液滴破裂,并且液滴尺寸对流速波动敏感,通常会导致多分散性。在本文中,我们通过高纵横比(> 3.5)矩形喷嘴结构显示了自发乳化作用。由于结构的局限性和突变性,在分散相和连续相之间会产生拉普拉斯压差,从而导致细线变细和液滴夹断,而无需精确控制外部流动条件。通过大量基本结构的并行化,开发了一种高通量液滴发生器。该设备可将水性样品快速简便地分配为油中数百万个均匀的皮微滴。使用该设备,基于片上微滴的数字聚合酶链反应(PCR)可以对具有宽动态范围的稀有基因进行绝对定量。

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