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Dual recognition mechanism for bacteria detection using surface enhanced Raman spectroscopicnanoprobes

机译:使用表面增强拉曼光谱丙烷检测的双识别机制

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Anisotropic nanoparticles (i.e., silver nanocubes, gold nanorods) based SERS molecular probe were designed and fabricated for the rapid and specific detection of bacterial targets in a test-in-a-tube platform utilizing a novel dual-recognition mechanism. The probes were synthesized by covalently attaching Raman tags and bacteria-specific antibodies to the surface of silver nanocubes. Specific binding between the probes and bacterial targets ensured surface enhanced Raman spectroscopic (SERS) signatures of the targets to be observed alongside with the SERS signals of the Raman tags. The assessment through the dual signals (superimposed target and tag Raman signatures) established a specific recognition of the targets in a single step, no washing/separation steps were needed to separate target-bound probes from unbound ones, because unbound probes only yield tag signatures, and could easily be distinguished from the target-bound ones. The dual-recognition protocol implemented with a portable Raman spectrometer would become an easy-to-use, field-deployable spectroscopic sensor for onsite detection of pathogenic microorganisms.
机译:设计和制造基于各向异性纳米颗粒(即银纳米孔,金纳米棒)的SERS分子探针,用于利用新的双重识别机制的试验机构中的细菌靶标的快速和特异性检测。通过将拉曼标签和细菌特异性抗体共价附着在银纳米孔的表面上合成探针。探针和细菌目标之间的特异性结合确保了与拉曼标签的SERS信号一起观察到的靶的表面增强拉曼光谱(SERS)签名。通过双信号(叠加的目标和标签拉曼签名)的评估在单一的步骤中建立了对靶的特定识别,不需要从未绑定的靶标探针将靶标探针分离,因为未结合探头仅产生标签签名,并且可以轻松地与目标结合的区别。用便携式拉曼光谱仪实现的双识别协议将成为现场检测的易于使用的现场可展开的光谱传感器,用于致病微生物。

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