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A simple procedure to produce FDM-based 3D-printed microfluidic devices with an integrated PMMA optical window

机译:一种简单的过程,可以使用集成的PMMA光窗生产基于FDM的3D印刷的微流体设备

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摘要

Fused deposition modeling (FDM) is the lowest cost 3D-printing technology and has found application in microfluidics in the past few years. However, it lacks resolution and the ability to print transparent windows for optical detection. For this reason, we present a simple protocol to prepare 3D-printed microfluidic channels around 170 mu m width and transparent windows using a 0.2 mm nozzle, poly(methyl methacrylate) (PMMA) as the transparent substrate and poly(lactic acid) (PLA) as the polymer filament. Due to the similar molecular structure of PLA and PMMA, outstanding bonding was achieved. After optimization of the printing settings, we found that a gap of 200 mm between the PMMA slide and the nozzle results in channels that present no leakage even with high flow rates of up to 2 mL min(-1). As a proof of concept, we present bioanalytical applications for devices produced with this protocol, such as determination of nitrite, total proteins and nitric oxide, as well as microorganism visualization. We believe that this protocol can simplify the production of low-cost microfluidic devices containing transparent detection windows since it does not require tapes or glues, nor stopping the printing process to insert other materials, such as glass.
机译:融合沉积建模(FDM)是最低的3D印刷技术,并在过去几年中发现了在微流体中的应用。但是,它缺乏分辨率和打印透明窗口进行光学检测的能力。因此,我们提出了一种简单的协议,用于使用0.2mm喷嘴,聚(甲基丙烯酸甲酯)(PMMA)作为透明基材和聚(乳酸)(PLA)(PLA) )作为聚合物长丝。由于PLA和PMMA的类似分子结构,实现了出色的粘接。在优化打印设置之后,我们发现PMMA载玻片与喷嘴之间200毫米的间隙,并且即使高达2mL min的高流速(-1),喷嘴也会导致泄漏的通道。作为概念证据,我们提出了用该方案生产的装置的生物分析应用,例如亚硝酸盐,总蛋白质和一氧化氮的测定,以及微生物可视化。我们认为,该协议可以简化含有透明检测窗口的低成本微流体装置的生产,因为它不需要胶带或胶水,也不会停止印刷过程以插入其他材料,例如玻璃等材料。

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