Department of Pure and Applied Chemistry, Technology and Innovation Centre, University of Strathclyde, Glasgow, G1 1RD, UK.
Translational and Clinical Research Institute, Newcastle University, Newcastle-Upon-Tyne, NE2 4HH, UK.
Analyst. 2022 Oct 24;147(21):4674-4700. doi: 10.1039/d2an00703g.
Antibiotic resistant bacteria constitute a global health threat. It is essential for healthcare professionals to prescribe the correct dose of an effective antibiotic to mitigate the bacterial infection in a timely manner to improve the therapeutic outcomes to the patient and prevent the dissemination of antibiotic resistance. To achieve this, there is a need to implement a rapid and ultra-sensitive clinical diagnosis to identify resistant bacterial strains and monitor the effect of antibiotics. In this review, we highlight the use of surface enhanced Raman scattering (SERS) as a powerful diagnostic technique for bacterial detection and evaluation. Initially, this is viewed through a lens covering why SERS can surpass other traditional techniques for bacterial diagnosis. This is followed by different SERS substrates design, detection strategies that have been used for various bacterial biomarkers, how SERS can be combined with other diagnostic platforms to improve its performance towards the bacterial detection and the application of SERS for antibiotic resistance diagnosis. Finally, the recent progress in SERS detection methods in the last decade for the "" antibiotic resistant challenges as demonstrators of public health major threats is reviewed, namely: (), ()/ (), (), () and (). This review provides a comprehensive view of the current state of the art with regard to using SERS for assessing antibiotic resistance with a future outlook on where the field go head in the coming years.
耐药菌对全球健康构成威胁。医疗专业人员必须为患者开出正确剂量的有效抗生素,及时控制细菌感染,改善治疗效果,防止抗生素耐药性的传播。为了实现这一目标,需要实施快速和超灵敏的临床诊断,以识别耐药菌株并监测抗生素的效果。在这篇综述中,我们强调了表面增强拉曼散射(SERS)作为一种强大的细菌检测和评估诊断技术的应用。首先,我们从 SERS 为何能够超越其他传统细菌诊断技术的角度来探讨这个问题。接着介绍了不同的 SERS 基底设计,用于各种细菌生物标志物的检测策略,SERS 如何与其他诊断平台相结合以提高其细菌检测性能,以及 SERS 在抗生素耐药性诊断中的应用。最后,回顾了过去十年中 SERS 检测方法在“抗生素耐药性挑战”方面的最新进展,这些挑战是公共卫生主要威胁的范例,包括:()、()/()、()、()和()。本综述全面介绍了目前使用 SERS 评估抗生素耐药性的最新技术水平,并对未来几年该领域的发展方向进行了展望。