台式低场核磁共振技术的发展及其在药物管制领域的应用

Q3 Medicine
Qi Liao, Yong-Hong Liu, Ying Jiao, Xiao-Ying Yang, Yi-Hua Yang, Cui-Mei Liu, Rui-Xia Gao
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引用次数: 0

摘要

目前,以新型精神活性物质为代表的药物替代品逐渐普及,使得在毒品调查中对结构未知的新型药物的识别需求日益增加。核磁共振波谱是分析分子结构的重要工具。在没有标准物质的情况下,定量核磁共振(qNMR)可以承担复杂混合物中目标物质的定量分析,在新药及其前体药物的研究中具有独特的优势。由于场地和维护成本的限制,以及操作相对复杂,高场超导核磁共振在药物研究中的应用较少。近年来发展起来的台式低场核磁共振提供了一种新的替代解决方案。由于采用永磁体,减小了其尺寸,降低了运行维护成本。它已广泛应用于各个研究领域。本文综述了低场核磁共振技术的发展,总结了台式低场核磁共振在可疑物质筛选鉴定、含量快速测定、药品生产工艺和合成路线分析、相关溯源等方面的应用。展望了该技术在药物研究中的前景和发展方向,旨在为从事分析化学和药物研究的研究人员提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Development of Benchtop Low‑Field Nuclear Magnetic Resonance Technology and Its Application in Drug Control Field].

At present, the drug substitutes represented by new psychoactive substances are gradually becoming popular, leading to an increasing demand for identifying novel drugs with unknown structures in drug investigation. Nuclear magnetic resonance (NMR) spectroscopy is an important tool for analyzing molecular structures. In the absence of standard substances, quantitative NMR (qNMR) can undertake the quantitative analysis of target substances in complex mixtures and has unique advantages in the research of new drugs and their precursor drugs. Due to the limitations of the site and maintenance costs, as well as relatively complex operation, high-field superconducting NMR is less commonly applied in drug research. The desktop low‑field NMR developed in recent years provides a new alternative solution. Due to the use of permanent magnets, its size is reduced, and the operation and maintenance costs are lowered. It has been widely used in various research fields. This article reviews the development of low-field NMR technology, summarizes the application of desktop low-field NMR in screening and identification of suspicious substances, rapid content determination, analysis of drug manufacturing processes and synthetic routes, and correlation traceability. It also looks forward to the prospects and development directions of this technology in drug research, aiming to provide a reference for researchers who work in analytical chemistry and drug research.

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法医学杂志
法医学杂志 Medicine-Pathology and Forensic Medicine
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1.50
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