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A Microfluidic Concentration Gradient Maker with Tunable Concentration Profiles by Changing Feed Flow Rate Ratios

机译:通过改变进料流量比,微流体浓度梯度制造机具有可调谐浓度分布

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摘要

Microfluidic chips—in which chemical or biological fluid samples are mixed into linear or nonlinear concentration distribution profiles—have generated enormous enthusiasm of their ability to develop patterns for drug release and their potential toxicology applications. These microfluidic devices have untapped potential for varying concentration patterns by the use of one single device or by easy-to-operate procedures. To address this challenge, we developed a soft-lithography-fabricated microfluidic platform that enabled one single device to be used as a concentration maker, which could generate linear, bell-type, or even S-type concentration profiles by tuning the feed flow rate ratios of each independent inlet. Here, we present an FFRR (feed flow rate ratio) adjustment approach to generate tens of types of concentration gradient profiles with one single device. To demonstrate the advantages of this approach, we used a Christmas-tree-like microfluidic chip as the demo. Its performance was analyzed using numerical simulation models and experimental investigations, and it showed an excellent time response (~10 s). With on-demand flow rate ratios, the FFRR microfluidic device could be used for many lab-on-a-chip applications where flexible concentration profiles are required for analysis.
机译:微流体芯片 - 其中化学或生物流体样品被混入线性或非线性浓度分布型材 - 产生了巨大的热情,他们对释放药物释放和潜在毒理学应用的模式产生了巨大的热情。这些微流体装置具有通过使用单个装置或通过易于操作的程序而变化的浓度模式的潜在电位。为了解决这一挑战,我们开发了一种软光刻制造的微流体平台,使一种用作浓缩制造商的单个设备,可以通过调整进料流速来产生线性,钟型或甚至的S型浓度谱每个独立入口的比率。这里,我们介绍了一种FFRR(饲料流量比)调节方法,以产生几十种类型的浓度梯度曲线,单个装置。为了展示这种方法的优点,我们使用了一款像性树状微流体芯片作为演示。使用数值模拟模型和实验研究分析其性能,并显示出优异的时光响应(〜10秒)。随着按需流量比率,FFRR微流体装置可用于许多芯片应用,其中需要柔性浓度型材进行分析。

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