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Assessing the Reusability of 3D-Printed Photopolymer Microfluidic Chips for Urine Processing

机译:评估3D打印的光聚合物微流控芯片在尿液处理中的可重复使用性

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摘要

Three-dimensional (3D) printing is emerging as a method for microfluidic device fabrication boasting facile and low-cost fabrication, as compared to conventional fabrication approaches, such as photolithography, for poly(dimethylsiloxane) (PDMS) counterparts. Additionally, there is an increasing trend in the development and implementation of miniaturized and automatized devices for health monitoring. While nonspecific protein adsorption by PDMS has been studied as a limitation for reusability, the protein adsorption characteristics of 3D-printed materials have not been well-studied or characterized. With these rationales in mind, we study the reusability of 3D-printed microfluidics chips. Herein, a 3D-printed cleaning chip, consisting of inlets for the sample, cleaning solution, and air, and a universal outlet, is presented to assess the reusability of a 3D-printed microfluidic device. Bovine serum albumin (BSA) was used a representative urinary protein and phosphate-buffered solution (PBS) was chosen as the cleaning agent. Using the 3-(4-carboxybenzoyl)quinoline-2-carboxaldehyde (CBQCA) fluorescence detection method, the protein cross-contamination between samples and the protein uptake of the cleaning chip were assessed, demonstrating a feasible 3D-printed chip design and cleaning procedure to enable reusable microfluidic devices. The performance of the 3D-printed cleaning chip for real urine sample handling was then validated using a commercial dipstick assay.
机译:与传统的制造方法(例如光刻法)相比,对于聚二甲基硅氧烷(PDMS),三维(3D)打印正在成为一种用于微流体器件制造的方法,该方法具有轻便且低成本的特点。另外,用于健康监测的小型化和自动化设备的开发和实施中存在越来越大的趋势。虽然已经研究了PDMS对非特异性蛋白质的吸附作为可重复使用性的限制,但是尚未对3D打印材料的蛋白质吸附特性进行充分的研究或表征。考虑到这些基本原理,我们研究了3D打印的微流体芯片的可重用性。在此,提出了一种3D打印的清洁芯片,该芯片由样品,清洁溶液和空气的入口以及一个通用出口组成,以评估3D打印的微流体设备的可重复使用性。使用牛血清白蛋白(BSA)作为代表性的尿蛋白,并选择磷酸盐缓冲溶液(PBS)作为清洁剂。使用3-(4-羧基苯甲酰基)喹啉-2-甲醛(CBQCA)荧光检测方法评估样品之间的蛋白质交叉污染和清洁芯片的蛋白质吸收,证明可行的3D打印芯片设计和清洁程序以实现可重复使用的微流体设备。然后使用商用量油尺测定法验证3D打印清洁芯片在实际尿液样品处理中的性能。

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