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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >The rapid discovery and identification of physalins in the calyx of Physalis alkekengi L.var.franchetii (Mast.) Makino using ultra-high performance liquid chromatography-quadrupole time of flight tandem mass spectrometry together with a novel three-step data mining strategy
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The rapid discovery and identification of physalins in the calyx of Physalis alkekengi L.var.franchetii (Mast.) Makino using ultra-high performance liquid chromatography-quadrupole time of flight tandem mass spectrometry together with a novel three-step data mining strategy

机译:利用超高效液相色谱-四极杆飞行时间串联质谱法和新颖的三步数据挖掘策略快速发现和鉴定酸浆中的苦瓜中的肌醇六磷酸

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摘要

Physalins, uniquely discovered from genus physalis, showed significant bioactivities in many aspects. It is therefore very important for the exploration of natural resources rich of physalins. However, there is no efficient approach for rapid discovery and identification of this class of compounds due to their structural complexity. To address the issue, the fragmentation pathways and correspondingly fragmentation rules of physalins in negative MS/MS mode were thoroughly investigated in this study using seven physalin standards. As a result, diagnostic ions for the rapid screening of physalins and classification of different types of physalins were determined based on their MS/MS fragmentation patterns. On top of that, an integrated approach using UHPLC-QTOF-MS/MS together with a novel three-step data mining strategy was developed for the systematic analysis of physalins in complex samples. Consequently, 46 physalins including 20 novel ones were efficiently discovered and identified from the crude extracts of Ph. alkekengi calyx. The present study laid a foundation for future study of different parts of Ph. alkekengi and other physalis species with regard to rapid discovery of novel physalins. In addition, this study provided a base for establishing a quality control method of the raw materials of Ph. alkekengi according to the profile of physalins.
机译:从酸浆属中唯一发现的海藻毒素在许多方面都表现出显着的生物活性。因此,这对于开发富含藻磷脂的自然资源非常重要。然而,由于其结构复杂性,没有有效的方法来快速发现和鉴定这类化合物。为了解决这个问题,在这项研究中,使用七种physalin标准品彻底研究了physalins在阴性MS / MS模式下的碎裂途径和相应的碎裂规则。结果,基于它们的MS / MS碎裂模式,确定了用于快速筛选physalins和对不同类型physalins进行分类的诊断离子。最重要的是,开发了一种使用UHPLC-QTOF-MS / MS的集成方法以及新颖的三步数据挖掘策略,用于系统分析复杂样品中的海藻苦素。因此,有效地发现和鉴定了来自四叶草花萼粗提物中的46种海藻磷脂,包括20种新的。本研究奠定了基础,以期在新发现的海藻素的快速发现方面,对阿尔克肯氏菌和其他酸类的不同部分进行进一步的研究。此外,该研究为根据麦草苦素的概况建立叶甲药材的质量控制方法提供了依据。

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