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NMR techniques in biomedical and pharmaceutical analysis.

机译:生物医学和药物分析中的NMR技术。

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摘要

This article focuses on the description of some of the NMR techniques used in the field of biomedical and pharmaceutical research. Indeed, the NMR method has special characteristics which make it uniquely suitable for these kinds of studies. It is non-selective so that all the low molecular weight compounds in the sample investigated are detected simultaneously in a single run. NMR also provides rich structural information which is an important asset to characterize complex mixture components. NMR is quantitative, i.e. the area of a NMR signal is directly proportional to the number of corresponding nuclei and thus, at variance with other techniques, the response factor is not dependent on the molecular structure. It is also a non-invasive tool that permits in vivo studies in humans. Compared with other techniques, NMR is significantly insensitive, which represents the main drawback of the technique. The recent technological developments of the technique have nevertheless considerably improved its sensitivity. The first part of this article presents an overview of the advantages and limitations of NMR for in vitro quantitative analysis of complex matrices in liquid or semi-solid phases. The second part deals with the NMR-based metabolomics methodology. The third part describes the in vivo clinical magnetic resonance spectroscopy techniques. The fourth part reports some examples of NMR applications in the biomedical and pharmaceutical research fields.
机译:本文重点介绍生物医学和药物研究领域中使用的某些NMR技术。确实,NMR方法具有特殊的特性,使其特别适合于这类研究。它是非选择性的,因此可以在一次运行中同时检测出所研究样品中的所有低分子量化合物。 NMR还提供了丰富的结构信息,这是表征复杂混合物成分的重要资产。 NMR是定量的,即NMR信号的面积与相应核的数量成正比,因此,与其他技术不同,响应因子不依赖于分子结构。它也是允许在人体中进行体内研究的非侵入性工具。与其他技术相比,NMR非常不敏感,这代表了该技术的主要缺点。然而,该技术的最新技术发展大大提高了其灵敏度。本文的第一部分概述了NMR在液相或半固相中复杂基质的体外定量分析中的优点和局限性。第二部分介绍了基于NMR的代谢组学方法。第三部分介绍了体内临床磁共振波谱技术。第四部分报告了在生物医学和药物研究领域中NMR应用的一些示例。

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