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Different Accumulation Profiles of Multiple Components Between Pericarp and Seed of Alpinia oxyphylla Capsular Fruit as Determined by UFLC-MS/MS

机译:用UFLC-MS / MS测定叶顶果荚果果实果皮和种子中多种成分的不同积累特征

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摘要

Plant secondary metabolites are known to not only play a key role in the adaptation of plants to their environment, but also represent an important source of active pharmaceuticals. Alpinia oxyphylla capsular fruits, made up of seeds and pericarps, are commonly used in traditional East Asian medicines. In clinical utilization of these capsular fruits, inconsistent processing approaches (i.e., hulling pericarps or not) are employed, with the potential of leading to differential pharmacological effects. Therefore, an important question arises whether the content levels of pharmacologically active chemicals between the seeds and pericarps of A. oxyphylla are comparable. Nine secondary metabolites present in A. oxyphylla capsular fruits, including flavonoids (e.g., tectochrysin, izalpinin, chrysin, apigenin-4',7-dimethylether and kaempferide), diarylheptanoids (e.g., yakuchinone A and B and oxyphyllacinol) and sesquiterpenes (e.g., nootkatone), were regarded as representative constituents with putative pharmacological activities. This work aimed to investigate the abundance of the nine constituents in the seeds and pericarps of A. oxyphylla. Thirteen batches of A. oxyphylla capsular fruits were gathered from different production regions. Accordingly, an ultra-fast high performance liquid chromatography/quadrupole tandem mass spectrometry (UFLC-MS/MS) method was developed and validated. We found that: (1) the nine secondary metabolites were differentially concentrated in seeds and fruit capsules; (2) nootkatone is predominantly distributed in the seeds; in contrast, the flavonoids and diarylheptanoids are mainly deposited in the capsules; and (3) the content levels of the nine secondary metabolites occurring in the capsules varied greatly among different production regions, although the nootkatone levels in the seeds were comparable among production regions. These results are helpful to evaluating and elucidating pharmacological activities of A. oxyphylla capsular fruits. Additionally, it may be of interest to elucidate the mechanisms involved in the distinct accumulation profiles of these secondary metabolites between seeds and pericarps.
机译:已知植物次生代谢产物不仅在植物适应其环境中发挥关键作用,而且还代表了活性药物的重要来源。由种子和果皮组成的草荚果荚果果实通常用于传统的东亚药物中。在这些荚膜果实的临床利用中,采用不一致的加工方法(即是否去壳果皮),可能导致不同的药理作用。因此,提出了一个重要的问题,即叶氧假单胞菌的种子和果皮之间的药理活性化学物质的含量水平是否可比。氧化叶荚膜荚膜果实中存在九种次级代谢产物,包括黄酮类化合物(例如,ectochrysin,izalpinin,chrysin,芹菜素-4',7-二甲醚和山emp碱),二芳基庚烷类化合物(例如,雅库奇酮A和B和oxyphyllacines)(倍半萜类) Nootkatone),被认为具有假定的药理活性。这项工作旨在调查A. oxyphylla种子和果皮中九种成分的丰度。从不同的生产地区收集了十三批次的叶青农杆菌荚膜果实。因此,开发并验证了超快速高效液相色谱/四极串联质谱法(UFLC-MS / MS)。我们发现:(1)9种次生代谢产物差异地集中在种子和果荚中; (2)诺卡酮主要分布在种子中;相反,类黄酮和二芳基庚烷主要沉积在胶囊中。 (3)尽管生产区域内种子中的Nootkatone水平相当,但不同生产区域中胶囊中9种次生代谢产物的含量水平差异很大。这些结果有助于评估和阐明A.oxyphylla荚膜果实的药理活性。另外,阐明种子和果皮之间这些次生代谢产物的独特积累特性所涉及的机制可能很有意义。

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