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首页> 外文期刊>Molecules >Phytochemical Profiling of Coryphantha macromeris (Cactaceae) Growing in Greenhouse Conditions Using Ultra-High-Performance Liquid Chromatography-Tandem Mass Spectrometry
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Phytochemical Profiling of Coryphantha macromeris (Cactaceae) Growing in Greenhouse Conditions Using Ultra-High-Performance Liquid Chromatography-Tandem Mass Spectrometry

机译:使用超高效液相色谱 - 串联质谱法在温室条件下生长的植物植物(仙人掌)的植物化学分析

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Chromatographic separation combined with mass spectrometry is a powerful tool for the characterization of plant metabolites because of its high sensitivity and selectivity. In this work, the phytochemical profile of aerial and radicular parts of Coryphantha macromeris (Engelm.) Britton & Rose growing under greenhouse conditions was qualitatively investigated for the first time by means of modern ultra-high-performance liquid chromatography-tandem mass spectrometry (UHPLC-PDA-HESI-Orbitrap-MS/MS). The UHPLC-PDA-HESI-Orbitrap-MS/MS analysis indicated a high complexity in phenolic metabolites. In our investigation, 69 compounds were detected and 60 of them were identified. Among detected compounds, several phenolic acids, phenolic glycosides, and organic acids were found. Within this diversity, 26 metabolites were exclusively detected in the aerial part, and 19 in the roots. Twenty-four metabolites occurred in both plant parts. According to the relative abundance of peaks in the chromatogram, ferulic and piscidic acids and their derivatives may correspond to one of the main phenolic compounds of C. macromeris. Our results contribute to the phytochemical knowledge regarding C. macromeris and its potential applications in the pharmaceutical and cosmetic industries. Besides, some metabolites and their fragmentation patterns are reported here for the first time for cacti species.
机译:色谱分离结合质谱是一种强大的工具,用于表征植物代谢物,因为其高灵敏度和选择性。在这项工作中,Coryphantha Macromeris(Engelm.)的植物和自然部分的植物化学概况(Engelm。)Britton&Rose在温室条件下生长,首次通过现代超高效液相色谱 - 串联质谱法(UHPLC)第一次调查-pda-hesi-orbitrap-ms / ms)。 UHPLC-PDA-HESI-orbitrap-MS / MS分析表明酚类代谢物中的高复杂性。在我们的研究中,检测到69种化合物,并确定其中60种化合物。在检测到的化合物中,发现了几种酚酸,酚醛糖苷和有机酸。在这种多样化中,在空中部分中专门检测到26种代谢物,并在根中进行19。两种植物零件发生了二十四个代谢物。根据色谱图中的相对丰富的峰值,阿魏酸和衍生物可对应于C.大分子的主要酚类化合物之一。我们的结果有助于植物化学知识,有关C. Macromeris及其在制药和化妆品行业的潜在应用的知识。此外,这里首次向仙人掌种类报告一些代谢物及其碎片模式。

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