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Silica Core-based Surface-enhanced Raman Scattering (SERS) Tag: Advances in Multifunctional SERS Nanoprobes for Bioimaging and Targeting of Biomarkers

机译:基于硅芯的表面增强拉曼散射(SERS)标签:用于生物成像和生物标志物靶向的多功能SERS纳米探针的进展

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Surface-enhanced Raman scattering (SERS) has attracted considerable interest as a sensitive vibration-specific probe for bioanalytical and imaging applications. Among the various bioprobes available, Ag-embedded SERS tags have been rigorously developed for an extensive range of biodetection applications. In this review, we look at the additional functionality that SERS tags can offer via its magnetic properties, fluorescence, and an extension of the optical region into the near-infrared (NIR) spectrum. Such functionality can be achieved by using Ag nanoparticles (NPs) or Au/Ag hollow-shells (HS) as a SERS signaling unit, with SiO2 nanospheres providing a back-bone unit. This back-bone can include a magnetic core (M-SERS dots), but also provides an outer shell that protects the optical unit and allows for easy conjugation of linkers that can include fluorescent organic dyes for an additional optical unit (F-SERS dots). In use, M-SERS dots allow for the separation of target cancer or cancer stem cells with an external magnetic field, while F-SERS dots can rapidly locate specific proteins within large areas of tissue and simultaneously analyze multiple targets based on their Raman signals. Moreover, NIR SERS dots can be detected with a high sensitivity within deep tissues, thus allowing them to be applied to in vivo multiplex detection. As none of these advanced functional SERS dots exhibit any sign of cytotoxicity for cell lines, they demonstrate a clear potential for more efficient, high-throughput screening of biological molecules using Raman technology.
机译:表面增强拉曼散射(SERS)作为灵敏的振动特异性探针在生物分析和成像应用中引起了极大的兴趣。在各种可用的生物探针中,已针对各种生物检测应用严格开发了嵌入银的SERS标签。在本文中,我们将探讨SERS标签可通过其磁性,荧光以及将光学区域扩展到近红外(NIR)光谱而提供的其他功能。这种功能可以通过使用Ag纳米颗粒(NPs)或Au / Ag中空壳(HS)作为SERS信号单元来实现,而SiO2纳米球提供了骨干单元。该骨干可以包含磁芯(M-SERS点),但也可以提供一个外壳,用于保护光学单元并允许轻松偶联连接物,其中接头可以包含用于附加光学单元的荧光有机染料(F-SERS点) )。在使用中,M-SERS点可通过外部磁场分离目标癌症或癌症干细胞,而F-SERS点可在大型组织区域内快速定位特定蛋白质,并根据其拉曼信号同时分析多个目标。而且,NIR SERS点可以在深层组织中以高灵敏度检测,因此可以将它们应用于体内多重检测。由于这些先进的功能性SERS点均未显示出对细胞系具有任何细胞毒性的迹象,因此它们显示出使用拉曼技术进行生物分子更有效,高通量筛选的明显潜力。

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