FOCAS Research Institute, Technological University of Dublin, Kevin Street, Dublin 8, Ireland.
School of Physics and Optometric & Clinical Sciences, Technological University of Dublin, Kevin Street, Dublin 8, Ireland.
Anal Bioanal Chem. 2020 Apr;412(9):1993-2007. doi: 10.1007/s00216-019-02349-1. Epub 2020 Jan 3.
There is compelling evidence in the literature to support the application of Raman spectroscopy for analysis of bodily fluids in their native liquid state. Naturally, the strategies described in the literature for Raman spectroscopic analysis of liquid samples have advantages and disadvantages. Herein, recent advances in the analysis of plasma/serum in the liquid state are reviewed. The potential advantages of Raman analysis in the liquid form over the commonly employed infrared absorption analysis in the dried droplet form are initially highlighted. Improvements in measurement protocols based on inverted microscopic geometries, clinically adaptable substrates, data preprocessing and analysis and applications for routine monitoring of patient health as well as therapeutic administration are reviewed. These advances suggest that clinical translation of Raman spectroscopy for rapid biochemical analysis can be a reality. In the future, this method will prove to be highly beneficial to clinicians for rapid screening and monitoring of analytes and drugs in the biological fluids, and to the patients themselves, enabling early treatment, before the disease becomes symptomatic, allowing early recovery.
有大量文献证据支持拉曼光谱在分析体液的原始液态时的应用。当然,文献中描述的用于分析液态样品的拉曼光谱学策略各有优缺点。本文综述了近年来在液态下分析血浆/血清的进展。最初强调了拉曼分析在液态下相对于常用的干燥液滴形式的红外吸收分析的潜在优势。综述了基于倒置显微镜几何结构、临床适用基底、数据预处理和分析以及用于常规监测患者健康和治疗管理的应用方面的测量方案的改进。这些进展表明,拉曼光谱学用于快速生化分析的临床转化将成为现实。在未来,这种方法将对临床医生快速筛选和监测生物液中的分析物和药物非常有益,对患者本身也非常有益,使他们能够在疾病出现症状之前进行早期治疗,从而实现早期康复。