H. E. J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi, 75270, Pakistan.
Rapid Commun Mass Spectrom. 2013 Jan 15;27(1):169-78. doi: 10.1002/rcm.6441.
Tandem mass spectrometric studies of natural products revealed the identification of key fragments which can be helpful for their rapid dereplication in plant extracts utilizing a liquid chromatography/tandem mass spectrometry (LC/MS/MS) approach, particularly for the thermally labile compounds. The knowledge of the collision-induced dissociation (CID) fragmentation pattern of the molecule is essentially required prior to the analysis by LC/MS/MS.
The fragmentation patterns of eleven Buxus steroidal alkaloids were studied by using a positive ion electrospray ionization quadrupole time-of-flight mass spectrometry (ESI-QqTOF-MS/MS) hybrid instrument. Chromatographic separation of a Buxus papillosa extract was achieved using a capillary HPLC system coupled with the mass instrument.
ESI-QqTOF-MS (positive ion mode) showed the presence of several characteristic fragments which can be used to rapidly identify various classes of Buxus steroidal alkaloids. The presence of a cyclopropane ring in the cycloartenol skeleton and the hydroxyl group at C-10 was found to effect on the fragmentation pattern and afford characteristic peaks. This study distinguishes between different types of Buxus steroidal alkaloids based on logical fragmentation pathways. This strategy was successfully applied in LC/ESI-QqTOF-MS/MS analysis of Buxus papillosa extract to investigate and characterize Buxus steroidal alkaloids and 14 compounds were identified as steroidal alkaloids.
The knowledge of the fragmentation pattern was used for the rapid identification of this bioactive group of biosynthetically unique steroidal alkaloids in complex plant extracts of Buxus species, especially in the absence of any reference material, by combining key fragments, exact mass measurements and relative abundances of diagnostic fragment ions.
利用串联质谱技术对天然产物进行研究,揭示了关键片段的鉴定,这对于利用液相色谱/串联质谱(LC/MS/MS)方法快速鉴定植物提取物中的同系物非常有帮助,尤其是对于热不稳定的化合物。在进行 LC/MS/MS 分析之前,必须了解分子的碰撞诱导解离(CID)碎裂模式。
采用正离子电喷雾电离四极杆飞行时间质谱(ESI-QqTOF-MS/MS)联用仪器研究了 11 种黄杨甾体生物碱的碎裂模式。采用毛细管 HPLC 系统与质谱仪联用,实现了黄杨属 papillosa 提取物的色谱分离。
ESI-QqTOF-MS(正离子模式)显示存在几种特征碎片,可用于快速鉴定各种黄杨甾体生物碱。环阿屯醇骨架中环丙烷和 C-10 上的羟基的存在对碎裂模式有影响,并提供特征峰。本研究根据合理的碎裂途径区分不同类型的黄杨甾体生物碱。该策略成功应用于 LC/ESI-QqTOF-MS/MS 分析黄杨属 papillosa 提取物,以研究和鉴定黄杨甾体生物碱,共鉴定出 14 种甾体生物碱。
通过结合关键片段、精确质量测量和诊断碎片离子的相对丰度,利用碎裂模式的知识,可以在没有任何参考物质的情况下,快速鉴定黄杨属植物复杂提取物中具有生物活性的生物合成独特甾体生物碱这一生物活性基团。