Centre for Doctoral Training in Medical Devices and Health Technologies, Department of Biomedical Engineering , University of Strathclyde , Wolfson Centre, 106 Rottenrow , Glasgow G4 0NW , U.K.
WestCHEM , Department of Pure and Applied Chemistry , Technology and Innovation Centre, 99 George Street , Glasgow G1 1RD , U.K.
Anal Chem. 2019 Oct 1;91(19):12117-12128. doi: 10.1021/acs.analchem.9b02280. Epub 2019 Sep 19.
Fourier transform-infrared spectroscopy (FT-IR) represents an attractive molecular diagnostic modality for translation to the clinic, where comprehensive chemical profiling of biological samples may revolutionize a myriad of pathways in clinical settings. Principally, FT-IR provides a rapid, cost-effective platform to obtain a molecular fingerprint of clinical samples based on vibrational transitions of chemical bonds upon interaction with infrared light. To date, considerable research activities have demonstrated competitive to superior performance of FT-IR strategies in comparison to conventional techniques, with particular promise for earlier, accessible disease diagnostics, thereby improving patient outcomes. However, amidst the changing healthcare landscape in times of aging populations and increased prevalence of cancer and chronic disease, routine adoption of FT-IR within clinical laboratories has remained elusive. Hence, this perspective shall outline the significant clinical potential of FT-IR diagnostics and subsequently address current barriers to translation from the perspective of all stakeholders, in the context of biofluid, histopathology, cytology, microbiology, and biomarker discovery frameworks. Thereafter, future perspectives of FT-IR for healthcare will be discussed, with consideration of recent technological advances that may facilitate future clinical translation.
傅里叶变换红外光谱(FT-IR)是一种很有吸引力的分子诊断模式,有望应用于临床,对生物样本进行全面的化学分析可能会彻底改变临床环境中的许多途径。从根本上讲,FT-IR 提供了一种快速、经济有效的平台,可以根据化学键在与红外光相互作用时的振动跃迁,获得临床样本的分子指纹。迄今为止,大量研究活动表明,FT-IR 策略在与传统技术的比较中具有竞争力甚至更优越的性能,尤其有望实现更早、更易获得的疾病诊断,从而改善患者的预后。然而,在人口老龄化和癌症及慢性病发病率增加的医疗保健环境不断变化的情况下,临床实验室常规采用 FT-IR 仍难以实现。因此,本观点将概述 FT-IR 诊断的重要临床潜力,并随后从所有利益相关者的角度,针对生物流体、组织病理学、细胞学、微生物学和生物标志物发现框架,阐述当前转化的障碍。之后,将讨论 FT-IR 在医疗保健领域的未来展望,并考虑可能促进未来临床转化的最新技术进步。