纯位移核磁共振在代谢组学研究中的现状与未来。

IF 1.9 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Xi Chen, Gildas Bertho, Cédric Caradeuc, Nicolas Giraud, Covadonga Lucas-Torres
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引用次数: 1

摘要

在代谢组学领域,核磁共振是生物样品分析最有力的技术之一。然而,从生物体中提取的液体、组织或其他生物材料的高度复杂性仍然是最先进的脉冲序列的挑战,从而限制了代谢物的检测、鉴定和定量。在这种情况下,宽带同核解耦方法提供的分辨率增强,允许将1h多路模式简化为单线模式,已经将这种所谓的纯移位技术作为一种有前途的方法,以无与伦比的细节水平执行代谢分析。近年来,纯位移实验的设计取得了许多进展,为超高分辨率分析各种生物样品铺平了道路。这篇综述引导读者从早期的主要纯移位方法,已经成功地开发了过去几十年,以解决复杂的样品,到纯移位核磁共振到基于核磁共振代谢组学领域的最新和有前途的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Present and future of pure shift NMR in metabolomics

Present and future of pure shift NMR in metabolomics

NMR is one of the most powerful techniques for the analysis of biological samples in the field of metabolomics. However, the high complexity of fluids, tissues, or other biological materials taken from living organisms is still a challenge for state-of-the-art pulse sequences, thereby limiting the detection, the identification, and the quantification of metabolites. In this context, the resolution enhancement provided by broadband homonuclear decoupling methods, which allows for simplifying 1H multiplet patterns into singlets, has placed this so-called pure shift technique as a promising approach to perform metabolic profiling with unparalleled level of detail. In recent years, the many advances achieved in the design of pure shift experiments has paved the way to the analysis of a wide range of biological samples with ultra-high resolution. This review leads the reader from the early days of the main pure shift methods that have been successfully developed over the last decades to address complex samples, to the most recent and promising applications of pure shift NMR to the field of NMR-based metabolomics.

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来源期刊
CiteScore
4.70
自引率
10.00%
发文量
99
审稿时长
1 months
期刊介绍: MRC is devoted to the rapid publication of papers which are concerned with the development of magnetic resonance techniques, or in which the application of such techniques plays a pivotal part. Contributions from scientists working in all areas of NMR, ESR and NQR are invited, and papers describing applications in all branches of chemistry, structural biology and materials chemistry are published. The journal is of particular interest not only to scientists working in academic research, but also those working in commercial organisations who need to keep up-to-date with the latest practical applications of magnetic resonance techniques.
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