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A simple method of fabricating mask-free microfluidic devices for biological analysis

机译:制造用于生物学分析的无掩模微流体装置的简单方法

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摘要

We report a simple, low-cost, rapid, and mask-free method to fabricate two-dimensional (2D) and three-dimensional (3D) microfluidic chip for biological analysis researches. In this fabrication process, a laser system is used to cut through paper to form intricate patterns and differently configured channels for specific purposes. Bonded with cyanoacrylate-based resin, the prepared paper sheet is sandwiched between glass slides (hydrophilic) or polymer-based plates (hydrophobic) to obtain a multilayer structure. In order to examine the chip’s biocompatibility and applicability, protein concentration was measured while DNA capillary electrophoresis was carried out, and both of them show positive results. With the utilization of direct laser cutting and one-step gas-sacrificing techniques, the whole fabrication processes for complicated 2D and 3D microfluidic devices are shorten into several minutes which make it a good alternative of poly(dimethylsiloxane) microfluidic chips used in biological analysis researches.
机译:我们报告了一种简单,低成本,快速且无掩模的方法来制造二维(2D)和三维(3D)微流控芯片,用于生物学分析研究。在该制造过程中,激光系统用于切纸,以形成复杂的图案和用于特定目的的不同配置的通道。与氰基丙烯酸酯基树脂粘合,将制备的纸张夹在载玻片(亲水性)或聚合物基板(疏水性)之间,以获得多层结构。为了检查该芯片的生物相容性和适用性,在进行DNA毛细管电泳时测量了蛋白质浓度,两者均显示出阳性结果。利用直接激光切割和一步气体牺牲技术,将复杂的2D和3D微流体装置的整个制造过程缩短到几分钟,这使其成为生物分析研究中使用的聚二甲基硅氧烷微流体芯片的良好替代品。

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