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Flow controllable three-dimensional paper-based microfluidic analytical devices fabricated by 3D printing technology

机译:3D印刷技术制造的流量可控三维纸微流体分析装置

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In most cases, three-dimensional paper-based microfluidic analytical devices (3D-mu PADs) were fabricated manually by stacking or folding methods. For the first time, digital light processing stereolithography (DLP-SLA) 3D printing technology was adopted to automatically make 3D-mu PADs. In the fabrication process, a printing pause was set between two layers to allow paper to be placed in the resin tank. The resin on the fresh paper spontaneously bonded to the former cured paper layer during curing, thus realizing the automatic bonding and alignment between different layers of paper and avoiding the human participation and errors as in stacking and folding methods. There was a gap between two vertical aligned flow paths, therefore the liquid did not flow spontaneously from the upper layer to the lower layer. Most of the fluid flow in 3D-mu PADs was spontaneous or manually activated, which was not conducive to complex assays that require different regents to be delivered sequentially. Herein, we used an electric field or airflow to trigger the fluid flow and demonstrated the flow controllability by a proof-of-concept colorimetric assay. The limits of detection of glucose and albumin were 0.8 mM and 3.5 mu M, respectively, which were sufficient for clinical requirements. Given the characteristic of flow controllability, we believe that the proposed 3D-mu PADs have great potential to make paper-based complex assays automated and programmable. (C) 2019 Elsevier B.V. All rights reserved.
机译:在大多数情况下,三维纸基微流体分析装置(3D-亩的PAD)通过堆叠或折叠方法手动制造。首次,数字光处理立体光刻(DLP-SLA)3D印刷技术获得通过自动进行3D-亩垫。在制造过程中,一个打印暂停被两个层之间设置为允许纸张被放置在树脂罐。在新鲜纸的树脂固化,从而实现纸张的不同层之间的自动接合和对准并避免了人工参与和错误作为在层叠和折叠的方法中自然地结合到前固化纸层。有两个垂直排列的流动路径之间的间隙,因此,液体不从上层自发流动到下层。大多数在3D-亩的PAD的流体流的是自发的或手动激活,这是不利于复杂分析需要不同试剂被顺序地传送。在此,我们使用电场或气流来触发所述流体流和表明的一个证明的概念比色测定的流动控制性。检测葡萄糖和白蛋白的限为0.8毫米和3.5微米,分别,这是足够的临床要求。鉴于流动可控性的特点,我们认为,所提出的3D亩垫具有很大的潜力,使纸基复合检测自动和编程。 (c)2019年Elsevier B.V.保留所有权利。

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