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Microfluidic Mixing and Analog On-Chip Concentration Control Using Fluidic Dielectrophoresis

机译:使用流体介电电泳的微流混合和模拟片上浓度控制

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摘要

Microfluidic platforms capable of complex on-chip processing and liquid handling enable a wide variety of sensing, cellular, and material-related applications across a spectrum of disciplines in engineering and biology. However, there is a general lack of available active microscale mixing methods capable of dynamically controlling on-chip solute concentrations in real-time. Hence, multiple microfluidic fluid handling steps are often needed for applications that require buffers at varying on-chip concentrations. Here, we present a novel electrokinetic method for actively mixing laminar fluids and controlling on-chip concentrations in microfluidic channels using fluidic dielectrophoresis. Using a microfluidic channel junction, we co-flow three electrolyte streams side-by-side so that two outer conductive streams enclose a low conductive central stream. The tri-laminar flow is driven through an array of electrodes where the outer streams are electrokinetically deflected and forced to mix with the central flow field. This newly mixed central flow is then sent continuously downstream to serve as a concentration boundary condition for a microfluidic gradient chamber. We demonstrate that by actively mixing the upstream fluids, a variable concentration gradient can be formed dynamically downstream with single a fixed inlet concentration. This novel mixing approach offers a useful method for producing variable on-chip concentrations from a single inlet source.
机译:能够进行复杂的片上处理和液体处理的微流体平台可在工程和生物学的各个学科中实现广泛的传感,细胞和材料相关应用。然而,普遍缺乏能够实时动态控制芯片上溶质浓度的可用的有源微型混合方法。因此,对于需要改变芯片浓度的缓冲液的应用,通常需要多个微流体处理步骤。在这里,我们提出了一种新颖的电动方法,用于主动混合层流流体并使用流体介电电泳控制微流体通道中的芯片浓度。使用微流体通道结,我们将三个电解质流并排并排流动,以使两个外部导电流包围一个低导电中心流。三层流通过电极阵列驱动,其中外部流被电动偏转并被迫与中心流场混合。然后,新混合的中心流连续地向下游发送,以用作微流控梯度室的浓度边界条件。我们证明,通过积极地混合上游流体,可以动态地在下游以单个固定的入口浓度形成可变的浓度梯度。这种新颖的混合方法提供了一种有用的方法,可从单个入口源产生可变的芯片上浓度。

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