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红外光谱在生物分子和生物分析中的应用——综述。

Biomolecular and bioanalytical applications of infrared spectroscopy - A review.

机构信息

Institute of Analytical Chemistry and Radiochemistry, Center for Chemistry and Biomedicine, University of Innsbruck, Innrain 80/82, A-6020, Innsbruck, Austria.

Institute of Analytical Chemistry and Radiochemistry, Center for Chemistry and Biomedicine, University of Innsbruck, Innrain 80/82, A-6020, Innsbruck, Austria.

出版信息

Anal Chim Acta. 2020 Oct 9;1133:150-177. doi: 10.1016/j.aca.2020.04.015. Epub 2020 Apr 12.

Abstract

Infrared (IR; or mid-infrared, MIR; 4000-400 cm; 2500-25,000 nm) spectroscopy has become one of the most powerful and versatile tools at the disposal of modern bioscience. Because of its high molecular specificity, applicability to wide variety of samples, rapid measurement and non-invasivity, IR spectroscopy forms a potent approach to elucidate qualitative and quantitative information from various kinds of biological material. For these reasons, it became an established bioanalytical technique with diverse applications. This work aims to be a comprehensive and critical review of the recent accomplishments in the field of biomolecular and bioanalytical IR spectroscopy. That progress is presented on a wider background, with fundamental characteristics, the basic principles of the technique outlined, and its scientific capability directly compared with other methods being used in similar fields (e.g. near-infrared, Raman, fluorescence). The article aims to present a complete examination of the topic, as it touches the background phenomena, instrumentation, spectra processing and data analytical methods, spectra interpretation and related information. To suit this goal, the article includes a tutorial information essential to obtain a thorough perspective of bio-related applications of the reviewed methodologies. The importance of the fundamental factors to the final performance and applicability of IR spectroscopy in various areas of bioscience is explained. This information is interpreted in critical way, with aim to gain deep understanding why IR spectroscopy finds extraordinarily intensive use in this remarkably diverse and dynamic field of research and utility. The major focus is placed on the diversity of the applications in which IR biospectroscopy has been established so far and those onto which it is expanding nowadays. This includes qualitative and quantitative analytical spectroscopy, spectral imaging, medical diagnosis, monitoring of biophysical processes, and studies of physicochemical properties and dynamics of biomolecules. The application potential of IR spectroscopy in light of the current accomplishments and the future prospects is critically evaluated and its significance in the progress of bioscience is comprehensively presented.

摘要

红外(IR;或中红外,MIR;4000-400cm;2500-25000nm)光谱学已成为现代生物科学最强大和多功能的工具之一。由于其具有高的分子特异性、适用于各种不同的样品、快速测量和非侵入性,IR 光谱学成为一种从各种生物材料中阐明定性和定量信息的有力方法。由于这些原因,它成为了一种具有多种应用的既定生物分析技术。这项工作旨在对生物分子和生物分析 IR 光谱学领域的最新成就进行全面和批判性的回顾。该进展在更广泛的背景下呈现,概述了基本特征、技术的基本原理,并将其科学能力与其他在类似领域(例如近红外、拉曼、荧光)中使用的方法进行了直接比较。本文旨在对该主题进行全面的考察,因为它涉及到背景现象、仪器、光谱处理和数据分析方法、光谱解释以及相关信息。为了达到这个目的,文章包括了获得对所综述方法的生物相关应用的全面了解所必需的教程信息。解释了基本因素对 IR 光谱学在生物科学各个领域的最终性能和适用性的重要性。以批判性的方式解释这些信息,旨在深入了解为什么 IR 光谱学在这个极其多样化和动态的研究和应用领域得到了如此广泛的应用。主要重点是迄今为止已经确立的 IR 生物光谱学的应用多样性,以及目前正在扩展的应用。这包括定性和定量分析光谱学、光谱成像、医学诊断、生物物理过程监测以及生物分子的物理化学性质和动力学研究。根据当前的成就和未来的前景,对 IR 光谱学的应用潜力进行了批判性评估,并全面呈现了其在生物科学发展中的重要性。

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