首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Single step and mask-free 3D wax printing of microfluidic paper-based analytical devices for glucose and nitrite assays
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Single step and mask-free 3D wax printing of microfluidic paper-based analytical devices for glucose and nitrite assays

机译:用于葡萄糖和亚硝酸盐测定的微流体纸的分析装置的单步和无掩盖3D蜡印刷

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摘要

Microfluidic paper-based analytical devices (mu PADs) have recently emerged as a simple, portable, user-friendly, and affordable alternative to more instrument-intensive analytical approaches for point-of-care testing (POCT), food safety analysis, and environmental monitoring. However, most of the existing methods for the fabrication of mu PADs still face a great challenge because of different trade-offs among cost, convenience, and the pattern resolution. In this work, we report a facile one-step approach to prepare a mu PAD using an affordable, easy-to build 3D printer to generate patterns of solid wax on laboratory filter paper. The presented wax printing method did not require the use of predesigned masks and an external heat source to form complete hydrophobic wax barrier through the use of a custom-made extruder. The results revealed a strong linear relationship (R-2 = 0.985) between the nominal and the printed widths of the wax barriers. The achievable resolution of the wax barrier printed on filter paper was 468 +/- 72 mu m, which was lower than previously reported minimum barrier feature sizes achieved by wax printing and other wax patterning techniques, such as stamping and screen-printing. The analytical utility of the fabricated mu PADs was evaluated for colorimetric nitrite and glucose detection in artificial solutions. It was found that the fabricated mu PADs provided adequate accuracy and reproducibility for quantitative determination of nitrite and glucose within concentration ranges relevant to the disease detection in human saliva and urine. The wax printing approach reported here provides a simple, rapid, and cost-effective fabrication method for paper-based microfluidics and may bring benefits to medical diagnostics in the developing world.
机译:基于微流体纸张的分析装置(MU PAD)最近被出现为简单,便携,用户友好,并且可负担得起的替代品,以获得更多仪器密集型的分析方法,可用于护理点测试(POCT),食品安全分析和环境监测。然而,由于成本,便利性和模式分辨率之间的权衡不同,大多数用于制造MU垫的现有方法仍然面临巨大挑战。在这项工作中,我们举报了一个容易的一步方法,使用实惠,易于建立3D打印机准备MU垫,以在实验室滤纸上生成固体蜡的图案。所提出的蜡印刷方法不需要使用预先用的掩模和外部热源来形成完全疏水蜡屏障,通过使用定制的挤出机。结果显示了蜡屏障的标称和印刷宽度之间的强线性关系(R-2 = 0.985)。在滤纸上印刷的蜡屏障的可实现的分辨率为468 +/-72μm,低于以前报告的预先报告的最小屏障特征尺寸,通过蜡印刷和其他蜡图案技术实现,例如冲压和丝网印刷。在人造溶液中评价制造的MU垫的分析效用,用于种子亚硝酸盐和葡萄糖检测。发现制造的MU垫提供了足够的准确性和再现性,用于定量测定浓度测定浓度范围内与人类唾液和尿液中疾病检测相关的浓度范围。本文报道的蜡印刷方法提供了一种简单,快速,经济高效的纸张微流体制造方法,可为发展中国家提供对医疗诊断的益处。

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