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Highly viscous fluids in pressure actuated flow focusing devices

机译:压力致动集流装置中的高粘度流体

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Microfluidic flow focusing devices (mFFD) are currently used to produce microdroplets and emulsions. Recently, it has been demonstrated that they are well adapted to the encapsulation of biologic objects like proteins and cells. Liquids used for encapsulation are most of the time dilute polymeric solutions with relatively low viscosity. However, investigations have started to assess the possibility of encapsulation with more concentrated solutions, like semi-dilute solutions of alginates. In this work, we analyze the behavior of highly viscous alginate solutions in pressure actuated FFDs. Experiments have been performed using alginate solutions with a viscosity up to 2600 times that of water. In parallel, an analytical model of the flow in the different branches of the FFD has been derived that explains the limits of the droplet regime. This model can be used to produce scaling rules for FFDs, facilitating the dimensioning of FFDs according to the desired size of the capsules. Finally, an example of encapsulation of Jurkat cells in a high viscosity Keltone alginate capsule is given.
机译:微流体流动聚焦装置(mFFD)目前用于生产微滴和乳液。最近,已经证明它们非常适合于封装诸如蛋白质和细胞之类的生物物体。在大多数情况下,用于封装的液体是具有相对较低粘度的稀聚合物溶液。但是,研究已经开始评估用更浓缩的溶液(如藻酸盐的半稀释溶液)封装的可能性。在这项工作中,我们分析了压力驱动的FFD中高粘度藻酸盐溶液的行为。使用藻酸盐溶液进行了实验,其粘度高达水的2600倍。与此并行,已得出了FFD不同分支中的流动分析模型,该模型解释了液滴状态的局限性。该模型可用于生成FFD的缩放规则,从而根据胶囊的所需大小方便确定FFD的尺寸。最后,给出了Jurkat细胞在高粘度酮藻酸盐胶囊中的封装实例。

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