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Using three-phase flow of immiscible liquids to prevent coalescence of droplets in microfluidic channels: Criteria to identify the third liquid and validation with protein crystallization

机译:使用不溶混液体的三相流来防止微流体通道中的液滴聚结:鉴定第三种液体并通过蛋白质结晶进行验证的标准

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摘要

This manuscript describes the effect of interfacial tensions on three-phase liquid-liquid-liquid flow in microfluidic channels and the use of this flow to prevent microfluidic plugs from coalescing. One problem in using microfluidic plugs as microreactors is the coalescence of adjacent plugs caused by the relative motion of plugs during flow. Here, coalescence of reagent plugs was eliminated by using plugs of a third immiscible liquid as spacers to separate adjacent reagent plugs. This work tested the requirements of interfacial tensions for plugs of a third liquid to be effective spacers. Two candidates satisfying the requirements were identified, and one of these liquids was used in the crystallization of protein human Tdp1 to demonstrate its compatibility with protein crystallization in plugs. This method for identifying immiscible liquids for use as a spacer will also be useful for applications involving manipulation of large arrays of droplets in microfluidic channels.
机译:该手稿描述了界面张力对微流体通道中三相液-液-液流动的影响,以及使用这种流动来防止微流体塞聚结的现象。使用微流体塞作为微反应器的一个问题是由塞在流动期间的相对运动引起的相邻塞的聚结。在此,通过使用第三种不混溶的液体的塞子作为隔离物来分隔相邻的试剂塞子,从而消除了试剂塞子的聚结。这项工作测试了将第三种液体塞作为有效隔离物的界面张力的要求。确定了两个满足要求的候选物,并将其中一种液体用于蛋白质人Tdp1的结晶,以证明其与塞中蛋白质结晶的相容性。鉴定用作间隔物的不混溶液体的这种方法也将用于涉及操纵微流体通道中的大液滴阵列的应用中。

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