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Optofluidic in situ maskless lithography of charge selective nanoporous hydrogel for DNA preconcentration

机译:电荷选择性纳米多孔水凝胶的光流体原位无掩模光刻技术,用于DNA预浓缩

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摘要

An optofluidic maskless photopolymerization process was developed for in situ negatively charged nanoporous hydrogel [poly-AMPS (2-acrylamido-2-methyl-1-propanesulfonic acid)] fabrication. The optofluidic maskless lithography system, which combines a high power UV source and digital mirror device, enables fast polymerization of arbitrary shaped hydrogels in a microfluidic device. The poly-AMPS hydrogel structures were positioned near the intersections of two microchannels, and were used as a cation-selective filter for biological sample preconcentration. Preconcentration dynamics as well as the fabricated polymer shape were analyzed in three-dimensions using fluorescein sample and a confocal microscope. Finally, single-stranded DNA preconcentration was demonstrated for polymerase chain reaction-free signal enhancement.
机译:开发了一种用于原位带负电荷的纳米多孔水凝胶[poly-AMPS(2-acrylamido-2-methyl-1-propanesulfonic acid)]的光流体无掩模光聚合工艺。结合高功率紫外线源和数字镜设备的光流体无掩模光刻系统,可以在微流体设备中快速聚合任意形状的水凝胶。聚AMPS水凝胶结构位于两个微通道的交叉点附近,并用作生物样品预浓缩的阳离子选择性过滤器。使用荧光素样品和共聚焦显微镜在三维中分析了预浓缩动力学以及所制备的聚合物形状。最后,证明了单链DNA预浓缩可实现无聚合酶链反应的信号增强。

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