Key Laboratory for Green Pharmaceutical Technologies and Related Equipment of Ministry of Education, College of Pharmaceutical Sciences, Zhejiang University of Technology, Hangzhou, 310014, P.R. China.
Rapid Commun Mass Spectrom. 2013 Oct 30;27(20):2272-8. doi: 10.1002/rcm.6676.
Pyrrole derivatives are of considerable importance and are present in a wide range of natural products and used extensively in drug discovery. Fragmentation pathway studies play an important role in the structural identification of pyrrole derivatives. As a part of our ongoing work on heterocycles, fragmentation pathways of 2-substituted pyrrole derivatives were investigated by mass spectrometry (MS).
Twelve pyrrole derivatives were synthesized and analyzed. Low-resolution fragmentation ions of all the compounds were generated by ion trap mass spectrometry (ITMS(n) ) with an electrospray ionization (ESI) source in positive mode. Hybrid quadrupole time-of-flight mass spectrometry (QTOFMS) was used to determine the elemental compositions of the resultant product ions.
The side-chain substituents at the 2-position influence the fragmentation pathways. Typical losses of H2 O, aldehydes and pyrrole moieties from the M + H ion are observed for the compounds with side chains bearing aromatic groups at the 2-position of the pyrrole. However, losses of H2 O, alcohols and C3 H6 are the main cleavage pathways for compounds 6 and 12 with nonphenyl-substituted side chains at the 2-position.
Typical fragmentation mechanisms of 2-substituted pyrrole derivatives are proposed and elucidated based on the observations of ITMS(n) and QTOFMS spectra. The results showed that the fragmentation pathways were remarkably influenced by the side-chain substituents at the 2-position of pyrrole. This investigation should have value in the structural identification of this series of molecules or compounds with similar structures.
吡咯衍生物具有重要意义,存在于广泛的天然产物中,并广泛用于药物发现。碎片途径研究在吡咯衍生物的结构鉴定中起着重要作用。作为我们杂环研究工作的一部分,通过质谱(MS)研究了 2-取代吡咯衍生物的碎片途径。
合成并分析了 12 种吡咯衍生物。所有化合物的低分辨率碎片离子均通过离子阱质谱(ITMS(n))在正模式下用电喷雾电离(ESI)源生成。混合四极杆飞行时间质谱(QTOFMS)用于确定所得产物离子的元素组成。
2-位取代基的侧链会影响碎片途径。对于 2-位带有芳香族基团的侧链的化合物,观察到M+H离子中典型的 H2O、醛和吡咯部分的损失。然而,对于 2-位带有非苯基取代基的侧链的化合物 6 和 12,H2O、醇和 C3H6 的损失是主要的裂解途径。
根据 ITMS(n)和 QTOFMS 光谱的观察,提出并阐明了 2-取代吡咯衍生物的典型碎裂机制。结果表明,2-位取代基对吡咯的碎片途径有明显的影响。这项研究应该对这一系列分子或具有类似结构的化合物的结构鉴定具有价值。