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Applications of mid-infrared spectroscopy in the clinical laboratory setting

机译:中红外光谱在临床实验室设置中的应用

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摘要

Fourier transform mid-infrared (MIR-FTIR) spectroscopy is a nondestructive, label-free, highly sensitive and specific technique that provides complete information on the chemical composition of biological samples. The technique both can offer fundamental structural information and serve as a quantitative analysis tool. Therefore, it has many potential applications in different fields of clinical laboratory science. Although considerable technological progress has been made to promote biomedical applications of this powerful analytical technique, most clinical laboratory analyses are based on spectroscopic measurements in the visible or ultraviolet (UV) spectrum and the potential role of FTIR spectroscopy still remains unexplored. In this review, we present some general principles of FTIR spectroscopy as a useful method to study molecules in specimens by MIR radiation together with a short overview of methods to interpret spectral data. We aim at illustrating the wide range of potential applications of the proposed technique in the clinical laboratory setting with a focus on its advantages and limitations and discussing the future directions. The reviewed applications of MIR spectroscopy include (1) quantification of clinical parameters in body fluids, (2) diagnosis and monitoring of cancer and other diseases by analysis of body fluids, cells, and tissues, (3) classification of clinically relevant microorganisms, and (4) analysis of kidney stones, nails, and faecal fat.
机译:傅里叶变换中红外(MIR-FTIR)光谱是一种非破坏性,无标记,高度敏感的和具体的技术,提供有关生物样品的化学成分的完整信息。该技术都可以提供基本结构信息并用作定量分析工具。因此,它在临床实验室科学的不同领域具有许多潜在的应用。虽然已经进行了相当大的技术进步来促进这种强大的分析技术的生物医学应用,但大多数临床实验室分析都基于可见或紫外(UV)光谱中的光谱测量,并且FTIR光谱仍然仍未探测仍未开发的潜在作用。在本文中,我们将一些一般原则作为一种通过MIR辐射研究标本中的分子的有用方法,以及解释光谱数据的方法简短概述。我们的目的,说明了所提出的技术在临床实验室环境中的广泛潜在应用,重点关注其优缺点和讨论未来方向。 miR光谱的审查应用包括(1)通过分析体液,细胞和组织,(3)临床相关微生物的分类,(2)临床参数的临床参数的定量,(2)癌症和其他疾病的诊断和监测,(3)临床相关微生物的分类(4)肾结石,指甲和粪便脂肪分析。

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