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超高效液相色谱-电喷雾电离-多反应监测串联质谱法用于六种来自……的特殊吡喃萘醌代谢物的绝对定量和串联质谱结构解析

UPLC-ESI-MRM/MS for Absolute Quantification and MS/MS Structural Elucidation of Six Specialized Pyranonaphthoquinone Metabolites From .

作者信息

Limjiasahapong Suphitcha, Kaewnarin Khwanta, Jariyasopit Narumol, Hongthong Sakchai, Nuntasaen Narong, Robinson Jonathan L, Nookaew Intawat, Sirivatanauksorn Yongyut, Kuhakarn Chutima, Reutrakul Vichai, Khoomrung Sakda

机构信息

Metabolomics and Systems Biology, Department of Biochemistry, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.

Siriraj Metabolomics and Phenomics Center, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.

出版信息

Front Plant Sci. 2021 Jan 11;11:602993. doi: 10.3389/fpls.2020.602993. eCollection 2020.

Abstract

Pyranonaphthoquinones (PNQs) are important structural scaffolds found in numerous natural products. Research interest in these specialized metabolites lies in their natural occurrence and therapeutic activities. Nonetheless, research progress has thus far been hindered by the lack of analytical standards and analytical methods for both qualitative and quantitative analysis. We report here that various parts of are rich sources of PNQs. We developed an ultraperformance liquid chromatography-electrospray ionization multiple reaction monitoring/mass spectrometry method to quantitatively determine six PNQs from leaves, root, bark, wood, and heartwood. The addition of standards in combination with a stable isotope of salicylic acid-D was used to overcome the matrix effect with average recovery of 82% ± 1% ( = 15). The highest concentration of the total PNQs was found in the root (11,902 μg/g dry weight), whereas the lowest concentration was found in the leaves (28 μg/g dry weight). Except for the root, PNQ-332 was found to be the major compound in all parts of , accounting for ∼48% of the total PNQs quantified in this study. However, PNQ-318A was the most abundant PNQ in the root sample, accounting for 27% of the total PNQs. Finally, we provide novel MS/MS spectra of the PNQs at different collision induction energies: 10, 20, and 40 eV (POS and NEG). For structural elucidation purposes, we propose complete MS/MS fragmentation pathways of PNQs using MS/MS spectra at collision energies of 20 and 40 eV. The MS/MS spectra along with our discussion on structural elucidation of these PNQs should be very useful to the natural products community to further exploring PNQs in and various other sources.

摘要

吡喃萘醌(PNQs)是众多天然产物中重要的结构骨架。对这些特殊代谢产物的研究兴趣在于它们的天然存在及其治疗活性。尽管如此,由于缺乏用于定性和定量分析的分析标准品和分析方法,迄今为止研究进展受到阻碍。我们在此报告,[植物名称]的各个部位都是PNQs的丰富来源。我们开发了一种超高效液相色谱 - 电喷雾电离多反应监测/质谱方法,用于定量测定叶片、根、树皮、木材和心材中的六种PNQs。添加标准品并结合水杨酸 - D的稳定同位素用于克服基质效应,平均回收率为82%±1%(n = 15)。根中总PNQs的浓度最高(11,902μg/g干重),而叶片中的浓度最低(28μg/g干重)。除根以外,PNQ - 332被发现是[植物名称]所有部位的主要化合物,占本研究中定量的总PNQs的约48%。然而,PNQ - 318A是根样品中含量最丰富的PNQ,占总PNQs的27%。最后,我们提供了在不同碰撞诱导能量(10、20和40eV,正离子模式和负离子模式)下PNQs的新型二级质谱图。为了进行结构解析,我们利用20和40eV碰撞能量下的二级质谱图提出了PNQs完整的二级质谱裂解途径。这些二级质谱图以及我们对这些PNQs结构解析的讨论对于天然产物领域进一步探索[植物名称]及其他各种来源中的PNQs应该非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a06/7830255/8665ca1dee9f/fpls-11-602993-g001.jpg

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