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Formation of Droplets of Alternating Composition in Microfluidic Channels and Applications to Indexing of Concentrations in Droplet-Based Assays

机译:微流体通道中交替组合物的液滴和应用于液滴基的测定中的浓度分析

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摘要

For screening the conditions for a reaction by using droplets (or plugs) as microreactors, the composition of the droplets must be indexed. Indexing here refers to measuring the concentration of a solute by addition of a marker, either internal or external. Indexing may be performed by forming droplet pairs, where in each pair the first droplet is used to conduct the reaction, and the second droplet is used to index the composition of the first droplet. This paper characterizes a method for creating droplet pairs by generating alternating droplets, of two sets of aqueous solutions in a flow of immiscible carrier fluid within PDMS and glass microfluidic channels. The paper also demonstrates that the technique can be used to index the composition of the droplets, and this application is illustrated by screening conditions of protein crystallization. The fluid properties required to form the steady flow of the alternating droplets in a microchannel were characterized as a function of the capillary number Ca and water fraction. Four regimes were observed. At the lowest values of Ca, the droplets of the two streams coalesced; at intermediate values of Ca the alternating droplets formed reliably. At even higher values of Ca, shear forces dominated and caused formation of droplets that were smaller than the cross-sectional dimension of the channel; at the highest values of Ca, coflowing laminar streams of the two immiscible fluids formed. In addition to screening of protein crystallization conditions, understanding of the fluid flow in this system may extend this indexing approach to other chemical and biological assays performed on a microfluidic chip.
机译:为了通过使用微滴(或塞子)作为微反应器来筛选反应条件,必须对微滴的组成进行索引。这里的索引是指通过添加内部或外部标记物来测量溶质的浓度。可以通过形成液滴对来进行标引,其中在每对液滴中,第一液滴用于进行反应,第二液滴用于对第一液滴的组成进行标引。本文描述了一种通过在PDMS和玻璃微流体通道内的不混溶载液流中产生两组水溶液的交替液滴来产生液滴对的方法。本文还证明了该技术可用于对液滴的组成进行索引,并且该应用通过蛋白质结晶的筛选条件得以说明。在微通道中形成交替液滴稳定流动所需的流体特性,被表征为毛细管数Ca和水分数的函数。观察到四个方案。在Ca的最小值处,两个流的液滴聚结;在Ca的中间值时,交替形成的液滴可靠地形成。在甚至更高的Ca值下,剪切力占主导地位,并导致形成的液滴小于通道的横截面尺寸。在Ca的最高值下,形成了两种不混溶流体的并流层流。除了筛选蛋白质结晶条件外,对该系统中的流体流动的理解还可将这种索引方法扩展到在微流控芯片上执行的其他化学和生物学测定中。

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