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氢/氘交换质谱法用于探测特级初榨橄榄油中橄榄苦苷和橄榄苦苷元的差向异构体形式。

Hydrogen/Deuterium Exchange Mass Spectrometry for Probing the Isomeric Forms of Oleocanthal and Oleacin in Extra Virgin Olive Oils.

机构信息

Dipartimento di Chimica, Università degli Studi di Bari "Aldo Moro", Via E. Orabona 4, 70126 Bari, Italy.

Centro Interdipartimentale SMART, Università degli Studi di Bari "Aldo Moro", Via E. Orabona 4, 70126 Bari, Italy.

出版信息

Molecules. 2023 Feb 22;28(5):2066. doi: 10.3390/molecules28052066.

Abstract

Reversed-phase liquid chromatography and electrospray ionization with Fourier-transform single and tandem mass spectrometry (RPLC-ESI-FTMS and FTMS/MS) were employed for the structural characterization of oleocanthal (OLEO) and oleacin (OLEA), two of the most important bioactive secoiridoids occurring in extra virgin olive oils (EVOOs). The existence of several isoforms of OLEO and OLEA was inferred from the chromatographic separation, accompanied, in the case of OLEA, by minor peaks due to oxidized OLEO recognized as oleocanthalic acid isoforms. The detailed analysis of the product ion tandem MS spectra of deprotonated molecules ([M-H]) was unable to clarify the correlation between chromatographic peaks and specific OLEO/OLEA isoforms, including two types of predominant dialdehydic compounds, named , containing a double bond between carbon atoms C8 and C10, and a group of diasteroisomeric closed-structure (i.e., cyclic) isoforms, named . This issue was addressed by H/D exchange (HDX) experiments on labile H atoms of OLEO and OLEA isoforms, performed using deuterated water as a co-solvent in the mobile phase. HDX unveiled the presence of stable di-enolic tautomers, in turn providing key evidence for the occurrence, as prevailing isoforms, of of OLEO and OLEA, different from those usually considered so far as the main isoforms of both secoiridoids (having a C=C bond between C8 and C9). It is expected that the new structural details inferred for the prevailing isoforms of OLEO and OLEA will help in understanding the remarkable bioactivity exhibited by the two compounds.

摘要

反相液相色谱和电喷雾电离与傅里叶变换单级和串联质谱(RPLC-ESI-FTMS 和 FTMS/MS)用于鉴定橄榄苦苷(OLEO)和橄榄苦素(OLEA)的结构特征,这两种最主要的生物活性次级代谢产物存在于特级初榨橄榄油(EVOOs)中。OLEO 和 OLEA 的几种异构体的存在是从色谱分离中推断出来的,在 OLEA 的情况下,还存在由于氧化而产生的少量峰,这些峰被认为是橄榄苦苷的异构体,即橄榄苦酸异构体。对去质子化分子([M-H])的产物离子串联质谱谱图的详细分析无法阐明色谱峰与特定的 OLEO/OLEA 异构体之间的相关性,包括两种主要的二醛化合物类型,命名为 ,它们在碳原子 C8 和 C10 之间具有双键,以及一组非对映异构体的闭结构(即环状)异构体,命名为 。通过在流动相中使用重水作为共溶剂对 OLEO 和 OLEA 异构体中不稳定 H 原子进行 H/D 交换(HDX)实验,解决了这个问题。HDX 揭示了稳定的二烯醇互变异构体的存在,这反过来为 OLEO 和 OLEA 的主要异构体(在 C8 和 C9 之间具有 C=C 键)的存在提供了关键证据,这与迄今为止通常认为的主要异构体不同。预计推断出的 OLEO 和 OLEA 主要异构体的新结构细节将有助于理解这两种化合物表现出的显著生物活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4af8/10004237/117d41b30518/molecules-28-02066-g001.jpg

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