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Microfluidic channel with embedded SERS 2D platform for the aptamer detection of ochratoxin A

机译:具有嵌入式SERS 2D平台的微流体通道,可用于检测detection曲霉毒素A的适体

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摘要

A selective aptameric sequence is adsorbed on a two-dimensional nanostructured metallic platform optimized for surface-enhanced Raman spectroscopy (SERS) measurements. Using nanofabrication methods, a metallic nanostructure was prepared by electron-beam lithography onto a glass coverslip surface and embedded within a microfluidic channel made of polydimethylsiloxane, allowing one to monitor in situ SERS fingerprint spectra from the adsorbed molecules on the metallic nanostructures. The gold structure was designed so that its localized surface plasmon resonance matches the excitation wavelength used for the Raman measurement. This optofluidic device is then used to detect the presence of a toxin, namely ochratoxin-A (OTA), in a confined environment, using very small amounts of chemicals, and short data acquisition times, by taking advantage of the optical properties of a SERS platform to magnify the Raman signals of the aptameric monolayer system and avoiding chemical labeling of the aptamer or the OTA target.
机译:选择性适体序列吸附在二维纳米结构金属平台上,该平台针对表面增强拉曼光谱(SERS)测量进行了优化。使用纳米制造方法,通过电子束光刻在玻璃盖玻片表面上制备金属纳米结构,并将其嵌入由聚二甲基硅氧烷制成的微流体通道中,从而可以从金属纳米结构上吸附的分子就地监测SERS指纹图谱。设计金结构,使其局部表面等离子体激元共振与用于拉曼测量的激发波长匹配。然后,通过利用SERS的光学特性,在有限的环境中,使用非常少量的化学物质,并使用较短的数据采集时间,将该光流体设备用于检测毒素的存在,即曲毒素A(OTA)平台,以放大适体单层系统的拉曼信号,并避免对适体或OTA靶标进行化学标记。

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