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On-chip SERS analysis for single mimic pathogen detection using Raman-labeled nanoaggregate-embedded beads with a dielectrophoretic chip

机译:芯片上的SERS分析,使用带有电泳电泳的拉曼标记的纳米聚集体包埋的微珠检测单个模拟病原体

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The integration of Raman-labeled nanoaggregate-embedded beads (NAEBs) for high performance SERS analysis of single mimic pathogen on a self-designed dielectrophoretic chip is demonstrated. The Raman tags called NAEBs are silica-coated, dye-induced aggregates of a small number of gold nanoparticles (AuNPs). In this work, NAEBs consisting of a Raman dye tetramethyl-rhodamine-5-isothiosyanate (TRITC) are chemically functionalized with streptavidin to detect biotin-functionalized polystyrene (PS) microspheres which mimic as pathogens. The sample solution of completely mixed streptavidin-functionalized NAEBs and biotin-functionalized PS microspheres is pumped into the microfluidic channel of a dielectrophoretic chip. By giving an AC voltage on the embedded electrodes, a single mimic pathogen can be caught via the non-contact dielectrophoretic force and suspended at the central cross of four aluminum electrodes for subsequent Raman spectroscopic detection. The SERS signal of TRITC is used as a spectral signature of specific mimic pathogen recognition, otherwise only the background Raman signal of a PS microsphere is observed. A pathogen-specific biosensor based on the dielectrophoresis-Raman spectroscopy system is developed, and the proof-of-concept is confirmed by the specific molecular interaction model of streptavidin with biotin. Therefore, the on-chip multiplex SERS analysis of pathogens can be anticipated by employing different dye-tagged NAEBs simultaneously in a sample solution. We believe this bioassay has the ability to screen and detect multiple pathogens with minimal sample processing and handling even a small number of pathogens is present.
机译:证明了在自行设计的介电泳芯片上集成了拉曼标记的纳米聚集包埋微珠(NAEB),可对单个模拟病原体进行高效SERS分析。称为NAEB的拉曼标签是二氧化硅涂覆的染料诱导的少量金纳米颗粒(AuNP)的聚集体。在这项工作中,由拉曼染料四甲基-若丹明-5-异硫氰酸盐(TRITC)组成的NAEB用链霉亲和素进行化学功能化,以检测模拟为病原体的生物素功能化聚苯乙烯(PS)微球。将完全混合的链霉亲和素官能化的NAEB和生物素官能化的PS微球的样品溶液泵入介电泳芯片的微流体通道中。通过在嵌入式电极上施加交流电压,可以通过非接触介电泳力捕获单个模拟病原体,并将其悬浮在四个铝电极的中心交叉处,以用于随后的拉曼光谱检测。 TRITC的SERS信号用作特定模拟病原体识别的光谱特征,否则只能观察到PS微球的背景拉曼信号。开发了基于介电电泳-拉曼光谱系统的病原体特异性生物传感器,并通过抗生蛋白链菌素与生物素的特异性分子相互作用模型证实了概念验证。因此,可以通过在样品溶液中同时使用不同染料标记的NAEBs来对病原体进行片上多重SERS分析。我们相信,这种生物测定技术能够以最少的样品处理和处理,即使存在少量病原体,也能够筛选和检测多种病原体。

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