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Viscosity measurements utilizing a fast-flow microfluidic paper-based device

机译:利用快流微流体纸纸装置的粘度测量

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摘要

Traditional microfluidic paper-based analytical devices (μPADs) use capillary action to transport fluids through a single layer of paper. While μPADs have many advantages, flow rates are typically quite slow. Fast-flow paper-based analytical devices (ffPADs) have unique and advantageous flow characteristics that differ from traditional μPADs. ffPADs have a hollow channel with paper on at least one side that generates flow rates of cm/s. Within the device, two types of flow interact with each other to create the fast flow phenomenon. In this work, we take advantage of these flow characteristics to create a viscosity measurement method for biofluids. Solution viscosity is important for a range processes from pharmaceutical formulations to clinical diagnostics. The proposed method uses a small sample volume (100 μL) without the need for reference fluids or measurements for unknown fluid properties. Additionally, the device is fabricated from paper, double-sided adhesive and transparency film, so it still possesses the advantages of traditional paper-based devices such as portability, ease of use, and low-cost. To confirm the device performance, viscosities of polyethylene glycol (PEG) solutions were measured at different concentrations and were found to be in good agreement with a commercial viscometer. Finally, viscosity measurements of artificial saliva solutions were also demonstrated to verify biofluid applicability.
机译:基于传统的微流体纸的分析装置(μPAD)使用毛细管作用通过单个纸张运输流体。虽然μPAD具有许多优点,但流速通常非常慢。基于快速的纸张的分析装置(FFPAD)具有与传统μPAD不同的独特且有利的流动特性。 FFPAD在至少一侧具有空心通道,该纸张产生CM / S的流速。在设备内,两种类型的流量相互作用以产生快速流动现象。在这项工作中,我们利用这些流动特性来为生物流体产生粘度测量方法。溶液粘度对于来自药物制剂与临床诊断的范围工艺很重要。所提出的方法使用小样品体积(100μl),而不需要参考流体或用于未知的流体性质的测量。此外,该装置由纸张,双面粘合剂和透明膜制成,因此它仍然具有传统的纸质设备的优点,例如便携性,易用性和低成本。为了确认器件性能,在不同浓度下测量聚乙二醇(PEG)溶液的粘度,并发现与商业粘度计良好。最后,还证明了人造唾液溶液的粘度测量以验证生物流体适用性。

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