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Populus nigra L. bud absolute: a case study for a strategy of analysis of natural complex substances

机译:黑杨绝对芽:天然复杂物质分析策略的案例研究

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摘要

The new European regulations (e.g., REACH) require that Natural Complex Substances such as essential oils, absolutes, concretes, and resinoids are registered. This need implies that the chemical composition of these complex mixtures is characterized as exhaustively as possible in view of defining their toxicological risk. This study proposes an analysis strategy to be applied to the chemical characterization of poplar absolute as an example of Natural Complex Substances of vegetable origin. In the first part, the proposed strategy is described, and the advantages and the limitations related to the combination of conventional analytical techniques such as gas chromatography (GC) without and with sample derivatization and high-performance liquid chromatography (HPLC) are critically discussed. In the second part, the qualitative data obtained with GC and HPLC analysis of poplar bud absolute confirm the sample complexity which mainly consists of phenolic components. Fourteen compounds (i.e., phenolic acids, phenylpropanoids, and flavonoids) were then chosen as markers representative of the main classes of components characterizing poplar bud absolute. The marker quantitation carried out by GC-SIM-MS and HPLC-PDA analyses gives similar results confirming the reliability of both techniques. These results demonstrate that conventional analytical techniques can positively and effectively contribute to the study of the the composition of Natural Complex Substances, i.e., matrices for which highly effective separation is necessary, consisting mainly of isomers or homologous components. The combination of GC and HPLC techniques is ever more necessary for routine quality control when conventional instrumentations are used.
机译:新的欧洲法规(例如REACH)要求注册天然复合物,例如精油,纯油,混凝土和类树脂。这种需求意味着,从确定其毒理学风险的角度出发,应尽可能详尽地表征这些复杂混合物的化学组成。这项研究提出了一种分析策略,该方法可用于白杨的绝对化学特征,以植物来源的天然复杂物质为例。在第一部分中,对所提出的策略进行了描述,并着重讨论了与常规分析技术(例如不带样品衍生化和带样品衍生化的气相色谱(GC)和高效液相色谱(HPLC))相结合的优缺点。在第二部分中,通过杨树芽的GC和HPLC分析获得的定性数据证实了样品的复杂性,其主要由酚类成分组成。然后选择十四种化合物(即酚酸,苯基丙烷和黄酮)作为代表代表绝对杨树芽的主要组分类别的标记。通过GC-SIM-MS和HPLC-PDA分析进行的标记定量得到相似的结果,证实了这两种技术的可靠性。这些结果表明,常规分析技术可以对天然复合物的组成,即主要由异构体或同源组分组成的,需要高效分离的基质的组成的研究作出积极和有效的贡献。当使用常规仪器时,将GC和HPLC技术相结合对于常规质量控制变得更加必要。

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