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首页> 外文期刊>ACS applied materials & interfaces >Three-Dimensional Paper-Based Microfluidic Analytical Devices Integrated with a Plasma Separation Membrane for the Detection of Biomarkers in Whole Blood
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Three-Dimensional Paper-Based Microfluidic Analytical Devices Integrated with a Plasma Separation Membrane for the Detection of Biomarkers in Whole Blood

机译:基于三维纸的微流体分析装置与等离子体分离膜集成,用于检测全血的生物标志物

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摘要

Paper-based microfluidic analytical devices (mu PADs) have recently attracted attention as a point-of-care test kit because of their low cost and nonrequirement for external forces. To directly detect biomarkers in whole blood, however, they need to be assembled with a filter such as a plasma separation membrane (PSM) because the color of the blood cells interferes with the colorimetric assay. However, this assembly process is rather complicated and cumbersome, and the fluid does not uniformly move to the detection zone when the adhesion between the paper and PSM is not perfect. In this study, we report a simple three-dimensional (3D) printing method for fabricating PSM-integrated 3D-mu PADs made of plastics without the need for additional assembly. In detail, PSM was coated with parylene C to prevent its dissolution from organic solvent during 3D printing. Then, the coated PSM was superimposed on the paper. Detection zones and a reservoir were printed on the paper and PSM via liquid photopolymerization, using a digital light processing printer. The limit of detection of the PSM-integrated 3D-mu PADs for glucose in whole blood was 0.3 mM, and these devices demonstrated clinically relevant performance on diabetes patient blood samples. Our 3D-mu PADs can also simultaneously detect multiple metabolic disease markers including glucose, cholesterol, and triglycerides in whole blood. Our results suggest that our printing method is useful for fabricating 3D-mu PADs integrated with PSM for the direct detection of biomarkers in whole blood.
机译:基于纸质的微流体分析装置(MU垫)最近引起了作为护理点测试套件的注意力,因为它们的成本低,外部力量不正当。然而,直接检测全血中的生物标志物,需要用诸如等离子体分离膜(PSM)的过滤器组装,因为血细胞的颜色干扰了比色测定。然而,当纸张与PSM之间的粘合并不完美时,这种组装过程是相当复杂和繁琐的,并且流体不会均匀地移动到检测区。在这项研究中,我们报告了一种简单的三维(3D)印刷方法,用于制造由塑料制成的PSM集成的3D-MU焊盘而无需额外的组件。详细地,PSM用二甲苯C涂覆,以防止其在3D印刷期间从有机溶剂中溶解。然后,涂覆的PSM叠加在纸上。使用数字光处理打印机,通过液体光聚合在纸张和PSM上印刷检测区和储液器。全血葡萄糖的PSM集成3D-MU垫的检测限为0.3mm,这些装置在糖尿病患者血液样品上表现出临床相关性能。我们的3D-MU垫还可以同时检测多种代谢疾病标志物,包括全血的葡萄糖,胆固醇和甘油三酯。我们的研究结果表明,我们的印刷方法对于制造与PSM集成的3D-MU焊盘有用,以便直接检测全血的生物标志物。

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