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Bioanalytical applications of surface-enhanced Raman spectroscopy:de novo molecular identification

机译:表面增强拉曼光谱的生物分析应用:从头分子鉴定

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摘要

Surface enhanced Raman scattering (SERS) has become a powerful technique for trace analysis of biomolecules. The use of SERS-tags has evolved into clinical diagnostics, the enhancement of the intrinsic signal of biomolecules on SERS active materials shows tremendous promise for the analysis of biomolecules and potential biomedical assays. The detection of the de novo signal from a wide range of biomolecules has been reported to date. In this review, we examine different classes of biomolecules for the signals observed and experimental details that enable their detection. In particular, we survey nucleic acids, amino acids, peptides, proteins, metabolites, and pathogens. The signals observed show that the interaction of the biomolecule with the enhancing nanostructure has a significant influence on the observed spectrum. Additional experiments demonstrate that internal standards can correct for intensity fluctuations and provide quantitative analysis. Experimental methods that control the interaction at the surface are providing for reproducible SERS signals. Results suggest that combining advances in methodology with the development of libraries for SERS spectra may enable the characterization of biomolecules complementary to other existing methods.
机译:表面增强拉曼散射(SERS)已成为对生物分子进行痕量分析的强大技术。 SERS标签的使用已演变为临床诊断,SERS活性物质上生物分子固有信号的增强显示出对生物分子分析和潜在生物医学测定的巨大希望。迄今为止,已经报道了从多种生物分子中检测到从头信号。在这篇综述中,我们检查了观察到的信号的不同类别的生物分子以及能够对其进行检测的实验细节。特别是,我们调查了核酸,氨基酸,肽,蛋白质,代谢产物和病原体。观察到的信号表明生物分子与增强的纳米结构的相互作用对观察到的光谱具有显着影响。额外的实验表明,内标可以校正强度波动并提供定量分析。控制表面相互作用的实验方法提供了可再现的SERS信号。结果表明,将方法学的进展与SERS谱库的开发结合起来,可以使生物分子的表征与其他现有方法互补。

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