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用于分析掺有药物成分的性增强和减肥膳食补充剂的台式无低温恒温器低场¹H核磁共振光谱仪的评估。

Evaluation of a benchtop cryogen-free low-field ¹H NMR spectrometer for the analysis of sexual enhancement and weight loss dietary supplements adulterated with pharmaceutical substances.

作者信息

Pagès Guilhem, Gerdova Anna, Williamson David, Gilard Véronique, Martino Robert, Malet-Martino Myriam

机构信息

Groupe de RMN Biomédicale, Laboratoire de Synthèse et Physicochimie de Molécules d'Intérêt Biologique UMR CNRS 5068, Université de Toulouse , 118 route de Narbonne, 31062 Toulouse cedex 9, France.

出版信息

Anal Chem. 2014 Dec 2;86(23):11897-904. doi: 10.1021/ac503699u. Epub 2014 Nov 10.

Abstract

Nuclear magnetic resonance (NMR) spectroscopy is a unique tool for detection, structural characterization, and quantification of compounds in complex mixtures. However, due to cost constraints, NMR is rarely used in routine quality control (QC) analysis. The recent release of benchtop cryogen-free low-field NMR spectrometers represents a technological break in the NMR field. In this paper, we evaluated the potential of a benchtop cryogen-free 60 MHz spectrometer for uncovering adulteration of "100% natural" sexual enhancement and weight loss dietary supplements. We demonstrated that the adulterant(s) can readily be detected in ≈20 min of recording after a very simple and rapid sample preparation. We also showed that the quantification by the internal standard method can be done on the low-field NMR spectrometer and leads to results similar to those obtained with high-field NMR. Considering the cost and space efficiency of these spectrometers, we anticipate their introduction in QC laboratories as well as in governmental agencies, especially in the field of fraud detection.

摘要

核磁共振(NMR)光谱是用于检测、结构表征和定量复杂混合物中化合物的独特工具。然而,由于成本限制,NMR很少用于常规质量控制(QC)分析。台式无低温制冷剂低场NMR光谱仪的最新推出代表了NMR领域的一项技术突破。在本文中,我们评估了一台台式无低温制冷剂60 MHz光谱仪在发现“100%天然”性增强和减肥膳食补充剂掺假方面的潜力。我们证明,经过非常简单快速的样品制备后,在约20分钟的记录时间内即可轻松检测到掺假物。我们还表明,低场NMR光谱仪可以通过内标法进行定量,并且得到的结果与高场NMR得到的结果相似。考虑到这些光谱仪的成本和空间效率,我们预计它们将引入QC实验室以及政府机构,特别是在欺诈检测领域。

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