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基于核磁共振的代谢物分析方法。

NMR Based Methods for Metabolites Analysis.

作者信息

He Lichun, Jiang Bin, Peng Yun, Zhang Xu, Liu Maili

机构信息

State Key Laboratory of Magnetic Resonance and Atomic Molecular Physics, National Center for Magnetic Resonance in Wuhan, Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences, Wuhan 430071, China.

University of Chinese Academy of Sciences, Beijing 101408, China.

出版信息

Anal Chem. 2025 Mar 18;97(10):5393-5406. doi: 10.1021/acs.analchem.4c06477. Epub 2025 Mar 6.

Abstract

Metabolite analysis is essential for understanding the biochemical processes and pathways that sustain life, providing insights into the complex interactions within cellular systems and clinical examinations. This review explores recent applications of nuclear magnetic resonance (NMR) spectroscopy in metabolite studies. Various methods enhancing analytical accuracy for metabolome profiling and metabolic pathway studies, including spectral simplification techniques, quantitative NMR, high-resolution MAS NMR, and isotopic labeling, are discussed. The application of NMR in and studies is also covered, highlighting in-cell NMR and MRS techniques. Last but not least, we discuss recent advancements in NMR hyperpolarization, with a focus on dynamic nuclear polarization (DNP), chemically induced dynamic nuclear polarization (CIDNP), para-hydrogen-induced polarization (PHIP), and signal amplification by reversible exchange (SABRE). These advancements offer significant potential for enhancing the sensitivity and accuracy of metabolite studies and are expected to further deepen the study and understanding of metabolites and metabolic pathways.

摘要

代谢物分析对于理解维持生命的生化过程和途径至关重要,它能为细胞系统内的复杂相互作用及临床检查提供见解。本综述探讨了核磁共振(NMR)光谱在代谢物研究中的最新应用。讨论了各种提高代谢组分析和代谢途径研究分析准确性的方法,包括光谱简化技术、定量NMR、高分辨率MAS NMR和同位素标记。还涵盖了NMR在[此处原文缺失相关内容]和[此处原文缺失相关内容]研究中的应用,重点介绍了细胞内NMR和[此处原文缺失相关内容]MRS技术。最后但同样重要的是,我们讨论了NMR超极化的最新进展,重点关注动态核极化(DNP)、化学诱导动态核极化(CIDNP)、对氢诱导极化(PHIP)以及可逆交换信号放大(SABRE)。这些进展为提高代谢物研究的灵敏度和准确性提供了巨大潜力,有望进一步深化对代谢物和代谢途径的研究与理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2837/11923949/244ba4b8f7bb/ac4c06477_0001.jpg

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