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Development and Application of Aptamer-Based Surface-Enhanced Raman Spectroscopy Sensors in Quantitative Analysis and Biotherapy

机译:基于Aptamer的表面增强拉曼光谱传感器在定量分析和生物疗法中的开发和应用

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Surface-enhanced Raman scattering (SERS) is one of the most special and important Raman techniques. An apparent Raman signal can be observed when the target molecules are absorbed onto the surface of the SERS substrates, especially on the “hot spots” of the substrates. Early research focused on exploring the highly active SERS substrates and their detection applications in label-free SERS technology. However, it is a great challenge to use these label-free SERS sensors for detecting hydrophobic or non-polar molecules, especially in complex systems or at low concentrations. Therefore, antibodies, aptamers, and antimicrobial peptides have been used to effectively improve the target selectivity and meet the analysis requirements. Among these selective elements, aptamers are easy to use for synthesis and modifications, and their stability, affinity and specificity are extremely good; they have been successfully used in a variety of testing areas. The combination of SERS detection technology and aptamer recognition ability not only improved the selection accuracy of target molecules, but also improved the sensitivity of the analysis. Variations of aptamer-based SERS sensors have been developed and have achieved satisfactory results in the analysis of small molecules, pathogenic microorganism, mycotoxins, tumor marker and other functional molecules, as well as in successful photothermal therapy of tumors. Herein, we present the latest advances of the aptamer-based SERS sensors, as well as the assembling sensing platforms and the strategies for signal amplification. Furthermore, the existing problems and potential trends of the aptamer-based SERS sensors are discussed.
机译:表面增强的拉曼散射(SERS)是最特别和最重要的拉曼技术之一。当目标分子被吸收到SERS基板的表面上时,可以观察到表观拉曼信号,尤其是在基板的“热点”上。早期研究侧重于探索高度活跃的SERS基材及其在无标签SERS技术中的检测应用。然而,使用这些无标签的SERS传感器来检测疏水性或非极性分子,特别是在复杂的系统或低浓度下,这是一个很大的挑战。因此,已经使用抗体,适体和抗微生物肽来有效改善靶选择性并满足分析要求。在这些选择性元素中,适体易于用于合成和修饰,它们的稳定性,亲和力和特异性非常好;它们已成功用于各种测试区域。 SERS检测技术和适体识别能力的组合不仅提高了目标分子的选择精度,而且改善了分析的灵敏度。已经开发了基于适体的SERS传感器的变化,并且已经实现了令人满意的结果,在分析小分子,致病微生物,霉菌毒素,肿瘤标志物和其他功能分子中,以及成功的肿瘤的光热疗治疗。这里,我们介绍了基于适体的SERS传感器的最新进展,以及组装传感平台和信号放大的策略。此外,讨论了现有的基于Aptamer的SERS传感器的问题和潜在趋势。

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