Department of Pharmaceutical Chemistry, College of Pharmacy, Abha, Saudi Arabia.
Department of Pharmacognosy, College of Pharmacy, Abha, Saudi Arabia.
Rapid Commun Mass Spectrom. 2022 Feb 15;36(4):e9243. doi: 10.1002/rcm.9243.
Pentacyclic triterpenoids are secondary plant metabolites widespread in fruit peel, leaves, and stem bark. Due to their important biological activities, these compounds are widely screened using advance analytical techniques like electrospray ionization (ESI) mass spectrometry. Over the past few decades, the practice of ESI has been refined into a versatile ionization technique for a wide variety of analytes differing in their chemical makeup, size, complexity, and bimolecular stability.
The structure-fragmentation relationships (SFRs) of 16 pentacyclic triterpenoids were studied using a positive ion ESI quadrupole time-of-flight mass spectrometry (ESI-QqTOFMS/MS) hybrid instrument.
ESI-QqTOFMS (positive ion mode) showed the presence of the protonated molecules [M + H] of most of analyzed compounds. Low-energy collision-induced dissociation MS/MS analysis of these molecules indicated multiple losses of water molecules and the loss of the formic acid moiety [M + H - HCOOH] and other substituents as the predominant pathway for further fragmentation. Key product ions were identified which resulted from the retro-Diels-Alder cleavage of the ring system. SFRs of all the compounds analyzed were also developed.
We developed a fragmentation pattern of pentacyclic triterpenoids using the ESI-QqTOFMS/MS technique. It was concluded that the formation of key product ions and loss of characteristic neutrals can give detailed insight into structural information about the basic structure and attached substituents.
五环三萜类化合物是广泛存在于果皮、叶片和茎皮中的植物次生代谢产物。由于其重要的生物活性,这些化合物被广泛地使用电喷雾电离(ESI)质谱等先进分析技术进行筛选。在过去的几十年中,ESI 的实践已经被改进为一种通用的电离技术,适用于在化学组成、大小、复杂性和双分子稳定性方面存在差异的各种分析物。
使用正离子 ESI 四极杆飞行时间质谱(ESI-QqTOFMS/MS)联用仪器研究了 16 种五环三萜的结构-碎裂关系(SFR)。
ESI-QqTOFMS(正离子模式)显示了大多数分析化合物的质子化分子[M+H]+的存在。这些分子的低能碰撞诱导解离 MS/MS 分析表明,进一步碎裂的主要途径是多个水分子和甲酸部分[M+H-HCOOH]的丢失以及其他取代基的丢失。鉴定出的关键产物离子是由环系的反狄尔斯-阿尔德裂解产生的。还开发了所有分析化合物的 SFR。
我们使用 ESI-QqTOFMS/MS 技术开发了五环三萜类化合物的碎裂模式。结论是,关键产物离子的形成和特征中性的丢失可以深入了解关于基本结构和附加取代基的结构信息。