Baker Matthew J, Hussain Shawn R, Lovergne Lila, Untereiner Valérie, Hughes Caryn, Lukaszewski Roman A, Thiéfin Gérard, Sockalingum Ganesh D
WESTChem, Department of Pure and Applied Chemistry, Technology and Innovation Centre, University of Strathclyde, 99 George Street, Glasgow, G1 1RD, UK.
Chem Soc Rev. 2016 Apr 7;45(7):1803-18. doi: 10.1039/c5cs00585j. Epub 2015 Nov 27.
Vibrational spectroscopy can provide rapid, label-free, and objective analysis for the clinical domain. Spectroscopic analysis of biofluids such as blood components (e.g. serum and plasma) and others in the proximity of the diseased tissue or cell (e.g. bile, urine, and sputum) offers non-invasive diagnostic/monitoring possibilities for future healthcare that are capable of rapid diagnosis of diseases via specific spectral markers or signatures. Biofluids offer an ideal diagnostic medium due to their ease and low cost of collection and daily use in clinical biology. Due to the low risk and invasiveness of their collection they are widely welcomed by patients as a diagnostic medium. This review underscores recent research within the field of biofluid spectroscopy and its use in myriad pathologies such as cancer and infectious diseases. It highlights current progresses, advents, and pitfalls within the field and discusses future spectroscopic clinical potentials for diagnostics. The requirements and issues surrounding clinical translation are also considered.
振动光谱可为临床领域提供快速、无标记且客观的分析。对生物流体进行光谱分析,如血液成分(如血清和血浆)以及患病组织或细胞附近的其他生物流体(如胆汁、尿液和痰液),为未来医疗保健提供了非侵入性诊断/监测的可能性,能够通过特定的光谱标记或特征快速诊断疾病。生物流体因其采集简便、成本低廉且在临床生物学中日常使用,成为理想的诊断介质。由于其采集风险低且侵入性小,作为诊断介质受到患者广泛欢迎。本综述强调了生物流体光谱领域的最新研究及其在癌症和传染病等多种病理状况中的应用。它突出了该领域当前的进展、成果和陷阱,并讨论了未来光谱诊断的临床潜力。还考虑了围绕临床转化的要求和问题。