Tomsk Polytechnic University, Lenin Ave, 30, Tomsk, 634050, Russia; Siberian Medical State University, Moskovskiy Trakt, 2, Tomsk, 634050, Russia.
Tomsk Polytechnic University, Lenin Ave, 30, Tomsk, 634050, Russia.
Anal Chim Acta. 2021 Dec 1;1187:338978. doi: 10.1016/j.aca.2021.338978. Epub 2021 Aug 25.
With the continuous growth of the human population and new challenges in the quality of life, it is more important than ever to diagnose diseases and pathologies with high accuracy, sensitivity and in different scenarios from medical implants to the operation room. Although conventional methods of diagnosis revolutionized healthcare, alternative analytical methods are making their way out of academic labs into clinics. In this regard, surface-enhanced Raman spectroscopy (SERS) developed immensely with its capability to achieve single-molecule sensitivity and high-specificity in the last two decades, and now it is well on its way to join the arsenal of physicians. This review discusses how SERS is becoming an essential tool for the clinical investigation of pathologies including inflammation, infections, necrosis/apoptosis, hypoxia, and tumors. We critically discuss the strategies reported so far in nanoparticle assembly, functionalization, non-metallic substrates, colloidal solutions and how these techniques improve SERS characteristics during pathology diagnoses like sensitivity, selectivity, and detection limit. Moreover, it is crucial to introduce the most recent developments and future perspectives of SERS as a biomedical analytical method. We finally discuss the challenges that remain as bottlenecks for a routine SERS implementation in the medical room from in vitro to in vivo applications. The review showcases the adaptability and versatility of SERS to resolve pathological processes by covering various experimental and analytical methods and the specific spectral features and analysis results achieved by these methods.
随着人口的不断增长和生活质量的新挑战,以更高的准确性、灵敏度在不同场景下(从医疗植入物到手术室)诊断疾病和病变变得比以往任何时候都更加重要。尽管传统的诊断方法彻底改变了医疗保健,但替代分析方法正从学术实验室走向临床。在这方面,表面增强拉曼光谱(SERS)在过去二十年中凭借其实现单分子灵敏度和高特异性的能力得到了极大的发展,现在它正逐渐成为医生的武器库中的一员。本文综述了 SERS 如何成为包括炎症、感染、坏死/凋亡、缺氧和肿瘤在内的病理学临床研究的重要工具。我们批判性地讨论了迄今为止在纳米粒子组装、功能化、非金属衬底、胶体溶液中报道的策略,以及这些技术如何在病理学诊断(如灵敏度、选择性和检测限)中改善 SERS 特性。此外,介绍 SERS 作为生物医学分析方法的最新进展和未来前景至关重要。我们最后讨论了从体外到体内应用,SERS 在医疗室中常规实施仍然存在的挑战,作为瓶颈限制。该综述通过涵盖各种实验和分析方法以及这些方法所达到的特定光谱特征和分析结果,展示了 SERS 对解决病理过程的适应性和多功能性。