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无基质激光解吸电离质谱作为一种分析和区分蜂胶中复杂酚类混合物的功能工具:一种新的质量控制方法。

Matrix-free laser desorption ionization mass spectrometry as a functional tool for the analysis and differentiation of complex phenolic mixtures in propolis: a new approach to quality control.

机构信息

SFR QUASAV, Substances d'Origine Naturelle et Analogues Structuraux (SONAS), Campus du Végétal, University of Angers, 42 rue Georges Morel, 49070, Beaucouzé, France.

SFR MATRIX, University of Angers, 2 bd Lavoisier, 49045, Angers, France.

出版信息

Anal Bioanal Chem. 2018 Sep;410(24):6187-6195. doi: 10.1007/s00216-018-1225-1. Epub 2018 Jul 12.

Abstract

Matrix-free laser desorption ionization (LDI) is a rapid and versatile technique for the ionization of small, UV-light-absorbing molecules. Indeed, many natural products such as polyphenols exhibit inherent LDI properties, potentially facilitating their detection from highly complex samples such as crude extracts. With this in mind, the present work thoroughly evaluated the potential of LDI as an analytical tool for the chemical profiling and differentiation of propolis samples obtained from different global regions. Propolis is a complex bee product containing, among others, significant amounts of phenolic constituents that may show LDI effects. The present work will demonstrate that LDI not only provides reproducible and highly specific fingerprint spectra for each of the tested samples, it further allows their clear differentiation by principal compound analysis (PCA). Contrary to classical analytical approaches such as LC- or GC-MS, LDI does not require time-consuming sample preparation and method optimization procedures. Thus, the technique represents a most interesting analytical tool and potent supplement to classic LC-MS for quality control of herbal pharmaceuticals and dietary supplements. Present results clearly support this approach and further suggest the use of LDI as a versatile tool for the automated analysis of large sample batches on an industrial scale. Graphical abstract ᅟ.

摘要

无基质激光解吸电离 (LDI) 是一种快速且多功能的技术,可用于小的、吸收紫外光的分子的电离。事实上,许多天然产物,如多酚,具有固有的 LDI 特性,这可能有助于从高度复杂的样品(如粗提取物)中检测到它们。有鉴于此,本研究彻底评估了 LDI 作为一种分析工具,用于对来自不同全球地区的蜂胶样品进行化学特征分析和区分的潜力。蜂胶是一种复杂的蜜蜂产品,其中包含大量的酚类成分,可能表现出 LDI 效应。本研究将证明,LDI 不仅为每个测试样品提供了可重复且高度特异的指纹图谱,而且通过主成分分析(PCA)进一步允许对其进行清晰区分。与 LC-或 GC-MS 等经典分析方法不同,LDI 不需要耗时的样品制备和方法优化程序。因此,该技术代表了一种非常有趣的分析工具,是经典 LC-MS 用于草药药物和膳食补充剂质量控制的有力补充。目前的结果清楚地支持了这种方法,并进一步表明 LDI 可作为一种通用工具,用于在工业规模上自动分析大量样品批次。

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