首页> 美国卫生研究院文献>Diagnostics >Enhanced Sensing Behavior of Three-Dimensional Microfluidic Paper-Based Analytical Devices (3D-μPADs) with Evaporation-Free Enclosed Channels for Point-of-Care Testing
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Enhanced Sensing Behavior of Three-Dimensional Microfluidic Paper-Based Analytical Devices (3D-μPADs) with Evaporation-Free Enclosed Channels for Point-of-Care Testing

机译:增强三维微流体纸的分析装置(3D-μPADS)的感测行为具有无蒸发的封闭通道进行护理点测试

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摘要

Despite the potential in fabrication of microfluidic paper-based analytical devices (μPADs) for point-of-care testing (POCT) kits, the development of simple, accurate, and rapid devices with higher sensitivity remains challenging. Here, we report a novel method for 3D-μPAD fabrication with enclosed channels using vat photopolymerization to avoid fluid evaporation. In detail, height of the enclosed channels was adjusted from 0.3 to 0.17 mm by varying the UV exposure time from 1 to 4 s for the top barrier, whereas the exposure time for the bottom and side barriers was fixed. As a result, sample flow in the enclosed channels of 3D-μPADs showed lesser wicking speed with very scant evaporation compared to that in the hemi channels in the 3D-μPADs. The stoppage of evaporation in the enclosed channels significantly improved the gray intensity and uniformity in the detection zone of the 3D-μPADs, resulting in as low as 0.3 mM glucose detection. Thus 3D-μPADs with enclosed channels showed enhanced sensitivity compared to the 3D-μPADs with hemi channels when dealing with a small volume sample. Our work provides a new insight into 3D-μPAD design with enclosed channels, which redefines the methodology in 3D printing.
机译:尽管在微流体纸基的分析装置(μPADs),用于床边血糖检测(POCT)试剂盒,简单,准确的发展,并以更高的灵敏度仍然具有挑战性快速器件的制造的潜力。这里,我们报告用于3D-μPAD制造用大桶光聚合,以避免流体蒸发封闭通道的新方法。详细地,所述封闭通道的高度是通过改变从1至4秒的顶部阻挡UV曝光时间调节为0.3至0.17毫米,而曝光时间的底部和侧面的障碍是固定的。其结果是,相比于在3D-μPADs半侧通道在3D-μPADs的封闭通道样品流显示较小的芯吸速度非常稀少蒸发。蒸发的在封闭通道的停止显著改善了3D-μPADs的检测区中的灰度强度和均匀性,从而导致低到0.3 mM葡萄糖的检测。因此3D-μPADs与封闭通道表现出增强的灵敏度相比,3D-μPADs与用小体积的样品处理时半信道。我们的工作提供了新的洞察3D-μPAD设计,封闭的通道,重新定义了3D打印的方法。

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