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Inkjet-fabricated Surface Enhanced Raman Spectroscopy (SERS) Sensors on Paper for Biosensing

机译:纸上喷墨制造的表面增强拉曼光谱(SERS)传感器用于生物传感

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As a bio/chemical sensing technique, surface enhanced Raman spectroscopy (SERS) offers sensitivity comparable to that of fluorescence detection while providing highly specific information about the analyte. Although single molecule identification with SERS was demonstrated nearly 20 years ago, today a need exists to develop practical solutions for point-of-sample and point-of-care SERS systems. Recently, we demonstrated the fabrication of SERS substrates by inkjet printing silver and gold nanostructures onto paper and other microporous membranes. Using these devices, we have been able to achieve detection limits comparable to conventional nanofabricated plasmonic substrates. Furthermore, we leverage the fluidic properties of paper to enhance the performance of the SERS devices while also enabling unprecedented ease of use. Here we report the use of inkjet-fabricated paper SERS substrates as a detection device for biological macromolecules in an easy-to-use format with a low number of steps. The targeted biomarker is specifically detected with SERS through a single step competitive displacement, which dramatically reduces the number of steps as compared to conventional assays. Moreover, we further improve the usability of the assay by incorporating a paper SERS device with a fluidic cartridge format. The wicking nature of the paper sensor eliminates manual sample application steps and is much simpler than the world-to-chip interface of microfluidic devices. The introduction of this paper-based SERS assay is a significant step towards highly sensitive, low-cost, and, importantly, easy to use multiplexed biological assays.
机译:作为生物/化学传感技术,表面增强拉曼光谱(SERS)提供的灵敏度可与荧光检测媲美,同时提供有关分析物的高度特异性信息。尽管近20年前就证明了利用SERS进行单分子鉴定,但如今仍需要开发针对样本点和即时护理SERS系统的实用解决方案。最近,我们证明了通过在纸和其他微孔膜上喷墨印刷银和金纳米结构来制造SERS基板。使用这些设备,我们已经能够实现与常规纳米加工等离子基板可比的检测极限。此外,我们利用纸的流体特性来增强SERS设备的性能,同时还实现了前所未有的易用性。在这里,我们报告了以喷墨方式制造的纸质SERS基底以易于使用的形式,步骤少,作为生物大分子检测装置的情况。通过单步竞争性置换,可以用SERS特异性检测到目标生物标志物,与传统分析方法相比,该方法大大减少了步骤数。此外,我们通过将纸质SERS装置与流体盒形式结合使用,进一步提高了测定的可用性。纸传感器的芯吸特性消除了手动的样品施加步骤,并且比微流控设备的世界芯片接口简单得多。引入基于纸张的SERS分析是迈向高灵敏度,低成本并且重要的是易于使用的多重生物学分析的重要一步。

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