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STIRRING IMMISCIBLE LIQUIDS IN NANOLITER CAVITIES

机译:在纳米腔腔内搅拌不混溶的液体

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In this paper, we present immiscible liquid mixing within nanoliter droplet-based 'cavities' in microfluidic devices. In doing so, we create biphasic droplets with tunable internal structures, from near-equilibrium drop-in-drop morphologies to complex yet uniform non-equilibrium steady-state structures. The droplets contain an aqueous mixture of poly(ethylene glycol) (PEG) and dextran (DEX), and are injected into an immiscible oil in a simple microfluidic T-junction device. Aqueous droplets with tunable spatial heterogeneity in structure and composition could potentially be used to conduct in vitro biochemistry in environments that more closely emulate in vivo milieus than conventional macro or micro methods.
机译:在本文中,我们在微流体装置中存在不混溶的液体混合纳米液体液滴基“腔体”。在这样做时,我们创建了具有可调谐内部结构的双相液滴,从近平衡下降形态到复杂且均匀的非平衡稳态结构。液滴含有聚(乙二醇)(PEG)和葡聚糖(DEX)的水性混合物,并在简单的微流体T型连接装置中注入不混溶的油中。结构和组合物中具有可调谐空间异质性的含水液滴可能用于在常规宏观或微法中更紧密地模拟体外模拟的体外生物化学。

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