Guo Huaifang, Xing Jie, Xie Chunfeng, Qu Jianbo, Gao Yanhui, Lou Hongxiang
School of Pharmaceutical Sciences, Shandong University, 44 West Wenhua Road, Jinan 250012, P.R. China.
Rapid Commun Mass Spectrom. 2007;21(8):1367-74. doi: 10.1002/rcm.2972.
A detailed analysis of mass spectra generated from bis(bibenzyl) compounds in bryophytes under electron ionization time-of-flight (EI-TOF) and electrospray ionization triple-quadrupole (ESI-TQ) mass spectrometry conditions is reported. Proposed structures of the fragment ions were obtained by tracking the functional groups of 15 bis(bibenzyls), the structures of which are similar except for some alkoxyl substituents and linkage sites of biphenyl ether bonds. The elucidation was aided by the use of accurate mass measurements. Attempts have been made to provide rational pathways for the formation of these fragment ions, and a generalized fragmentation mechanism is proposed. The bis(bibenzyls) mentioned in this study include three types according to their structure characteristics, i.e. one biphenyl ether bond (A-type), two biphenyl ether bonds (B-type), one biphenyl ether and one biphenyl bond (C-type). The three types display different EI-MS and ESI-MS/MS product profiles, by which the bis(bibenzyl) type and the number of alkoxyl substituents can be identified. Isomers of bis(bibenzyls) can be differentiated to some extent, while the linkage sites of biphenyl ether bonds are difficult to identify. The structure-fragmentation relationships will facilitate the characterization of other bis(bibenzyls) and this will be of value for the high-throughput screening of novel bis(bibenzyls) in bryophytes.
本文报道了在电子电离飞行时间(EI-TOF)和电喷雾电离三重四极杆(ESI-TQ)质谱条件下,对苔藓植物中双(联苄)化合物产生的质谱进行的详细分析。通过追踪15种双(联苄)的官能团获得了碎片离子的推测结构,这些双(联苄)的结构相似,只是在一些烷氧基取代基和联苯醚键的连接位点上有所不同。准确质量测量有助于阐明结构。已尝试为这些碎片离子的形成提供合理途径,并提出了一种通用的碎裂机制。本研究中提到的双(联苄)根据其结构特征可分为三种类型,即一个联苯醚键(A型)、两个联苯醚键(B型)、一个联苯醚键和一个联苯键(C型)。这三种类型显示出不同的EI-MS和ESI-MS/MS产物谱,据此可鉴定双(联苄)的类型和烷氧基取代基的数量。双(联苄)的异构体在一定程度上可以区分,而联苯醚键的连接位点难以鉴定。结构-碎裂关系将有助于其他双(联苄)的表征,这对于苔藓植物中新型双(联苄)的高通量筛选具有重要价值。