Stevens Oliver, Iping Petterson Ingeborg E, Day John C C, Stone Nick
Biomedical Physics, School of Physics and Astronomy, University of Exeter, Exeter, Devon EX4 4QL, UK.
Chem Soc Rev. 2016 Apr 7;45(7):1919-34. doi: 10.1039/c5cs00850f. Epub 2016 Mar 9.
Raman spectroscopy has been shown by various groups over the last two decades to have significant capability in discriminating disease states in bodily fluids, cells and tissues. Recent development in instrumentation, optics and manufacturing approaches has facilitated the design and demonstration of various novel in vivo probes, which have applicability for myriad of applications. This review focusses on key considerations and recommendations for application specific clinical Raman probe design and construction. Raman probes can be utilised as clinical tools able to provide rapid, non-invasive, real-time molecular analysis of disease specific changes in tissues. Clearly the target tissue location, the significance of spectral changes with disease and the possible access routes to the region of interest will vary for each clinical application considered. This review provides insight into design and construction considerations, including suitable probe designs and manufacturing materials compatible with Raman spectroscopy.
在过去二十年中,多个研究团队已证明拉曼光谱在鉴别体液、细胞和组织中的疾病状态方面具有显著能力。仪器、光学和制造方法方面的最新进展推动了各种新型体内探针的设计与展示,这些探针适用于众多应用。本综述聚焦于针对特定临床应用的拉曼探针设计与构建的关键考量因素及建议。拉曼探针可用作临床工具,能够对组织中疾病特异性变化进行快速、非侵入性的实时分子分析。显然,对于所考虑的每个临床应用,目标组织位置、光谱变化与疾病的相关性以及进入感兴趣区域的可能途径都会有所不同。本综述深入探讨了设计与构建方面的考量因素,包括与拉曼光谱兼容的合适探针设计和制造材料。