Pauli Guido F, Jaki Birgit U, Lankin David C
Department of Medicinal Chemistry and Pharmacognosy, UIC/NIH Center for Botanical Dietary Supplements Research, and Institute for Tuberculosis Research, College of Pharmacy, University of Illinois at Chicago, Chicago, Illinois 60612, USA.
J Nat Prod. 2007 Apr;70(4):589-95. doi: 10.1021/np060535r. Epub 2007 Feb 14.
Quantitative 1H NMR (qHNMR) provides a value-added dimension to the standard spectroscopic data set involved in structure analysis, especially when analyzing bioactive molecules and elucidating new natural products. The qHNMR method can be integrated into any routine qualitative workflow without much additional effort by simply establishing quantitative conditions for the standard solution 1H NMR experiments. Moreover, examination of different chemical lots of taxol (paclitaxel) and a Taxus brevifolia extract as working examples led to a blueprint for a generic approach to performing a routinely practiced 13C-decoupled qHNMR experiment and for recognizing its potential and main limitations. The proposed protocol is based on a newly assembled 13C GARP broadband decoupled proton acquisition sequence that reduces spectroscopic complexity by removal of carbon satellites. The method is capable of providing qualitative and quantitative NMR data simultaneously and covers various analytes from pure compounds to complex mixtures such as metabolomes. Due to a routinely achievable dynamic range of 300:1 (0.3%) or better, qHNMR qualifies for applications ranging from reference standards to biologically active compounds to metabolome analysis. Providing a "cookbook" approach to qHNMR, acquisition conditions are described that can be adapted for contemporary NMR spectrometers of all major manufacturers.
定量¹H核磁共振(qHNMR)为结构分析中涉及的标准光谱数据集增添了一个有价值的维度,特别是在分析生物活性分子和阐明新天然产物时。通过简单地为标准溶液¹H核磁共振实验建立定量条件,qHNMR方法可以融入任何常规定性工作流程,而无需付出太多额外努力。此外,以不同化学批次的紫杉醇(paclitaxel)和短叶红豆杉提取物作为实例进行研究,得出了一个通用方法的蓝图,用于进行常规的¹³C去耦qHNMR实验,并认识到其潜力和主要局限性。所提出的方案基于一个新组装的¹³C GARP宽带去耦质子采集序列,该序列通过去除碳卫星峰降低了光谱复杂性。该方法能够同时提供定性和定量核磁共振数据,涵盖从纯化合物到复杂混合物(如代谢组)等各种分析物。由于常规可实现的动态范围为300:1(0.3%)或更好,qHNMR适用于从参考标准品到生物活性化合物再到代谢组分析等各种应用。本文提供了一种qHNMR的“操作手册”方法,描述了可适用于所有主要制造商的当代核磁共振光谱仪的采集条件。