Ion Mobility-Derived Collision Cross-Sections Add Extra Capability in Distinguishing Isomers and Compounds with Similar Retention Times: The Case of Aphidicolanes

离子迁移光谱法 化学 质谱法 加合物 互补性(分子生物学) 离子 高分辨率 正交性 色谱法 有机化学 生物 遥感 几何学 数学 遗传学 地质学
作者
Jin‐Mei Xia,Wenhai Xiao,Xihuang Lin,Yiduo Zhou,Peng Qiu,Hongkun Si,Xiaorong Wu,Siwen Niu,Zhu-Hua Luo,Xian‐Wen Yang
出处
期刊:Marine Drugs [Multidisciplinary Digital Publishing Institute]
卷期号:20 (9): 541-541 被引量:5
标识
DOI:10.3390/md20090541
摘要

The hyphenation of ion mobility spectrometry with high-resolution mass spectrometry has been widely used in the characterization of various metabolites. Nevertheless, such a powerful tool remains largely unexplored in natural products research, possibly mainly due to the lack of available compounds. To evaluate the ability of collision cross-sections (CCSs) in characterizing compounds, especially isomeric natural products, here we measured and compared the traveling-wave IMS-derived nitrogen CCS values for 75 marine-derived aphidicolanes. We established a CCS database for these compounds which contained 227 CCS values of different adducts. When comparing the CCS differences, 36 of 57 pairs (over 60%) of chromatographically neighboring compounds showed a ΔCCS over 2%. What is more, 64 of 104 isomeric pairs (over 60%) of aphidicolanes can be distinguished by their CCS values, and 13 of 18 pairs (over 70%) of chromatographically indistinguishable isomers can be differentiated from the mobility dimension. Our results strongly supported CCS as an important parameter with good orthogonality and complementarity with retention time. CCS is expected to play an important role in distinguishing complex and diverse marine natural products.

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