CIC biomaGUNE and CIBER-BBN , Paseo de Miramón 182 , 20014 Donostia-San Sebastián , Spain.
Ikerbasque, Basque Foundation for Science , 48013 Bilbao , Spain.
ACS Sens. 2019 May 24;4(5):1126-1137. doi: 10.1021/acssensors.9b00321. Epub 2019 May 13.
We have recently witnessed a major improvement in the quality of nanoparticles encoded with Raman-active molecules (SERS tags). Such progress relied mainly on a major improvement of fabrication methods for building-blocks, resulting in widespread application of this powerful tool in various fields, with the potential to replace commonly used techniques, such as those based on fluorescence. We present hereby a brief Perspective on surface enhanced Raman scattering (SERS) tags, regarding their composition, morphology, and structure, and describe our own selection from the current state-of-the-art. We then focus on the main bioimaging applications of SERS tags, showing a gradual evolution from two-dimensional studies to three-dimensional analysis. Recent improvements in sensitivity and multiplexing ability have enabled great advancements toward in vivo applications, e.g., highlighting tumor boundaries to guide surgery. In addition, the high level of biomolecule sensitivity reached by SERS tags promises an expansion toward biomarker detection in cases for which traditional methods offer limited reliability, as a consequence of the frequently low analyte concentrations.
我们最近见证了编码拉曼活性分子(SERS 标签)的纳米粒子质量的显著提高。这种进步主要依赖于构建块制造方法的重大改进,从而使这种强大的工具在各个领域得到了广泛应用,有可能取代常用的技术,如基于荧光的技术。我们在此简要介绍了表面增强拉曼散射(SERS)标签,包括它们的组成、形态和结构,并描述了我们自己从当前最先进技术中的选择。然后,我们专注于 SERS 标签的主要生物成像应用,展示了从二维研究到三维分析的逐渐演变。灵敏度和多重检测能力的最新改进使得 SERS 标签在体内应用方面取得了重大进展,例如,突出肿瘤边界以指导手术。此外,SERS 标签达到的生物分子高灵敏度水平有望扩展到传统方法可靠性有限的生物标志物检测,因为分析物浓度通常很低。