Feng Xidong, Siegel Marshall M
Chemical and Screening Sciences, Wyeth Research, Pearl River, NY 10965, USA.
Anal Bioanal Chem. 2007 Nov;389(5):1341-63. doi: 10.1007/s00216-007-1468-8. Epub 2007 Aug 14.
Natural products are a source of unique chemical entities with specific biological activities of great value to the pharmaceutical industry. However, the determination of unknown structures is usually time consuming and often becomes a bottleneck in the effort to develop natural products into effective drugs. The high-performance features of high magnetic field FTMS have greatly alleviated the structural elucidation bottleneck to meet increasingly shorter discovery timelines for drug candidates based on natural products. The high-performance features of high field FTMS include unsurpassed mass measurement accuracy for elemental formula determination, ultra-high mass resolution for component separation, the ability to perform multiple levels of tandem mass spectrometry for structural elucidation, and moderate sensitivity for limited supply of isolates. A number of applications utilizing these properties of FTMS have been reported recently for the structural elucidation of novel natural product structures originating from terrestrial and marine microorganisms. In this review, FTMS methods and their applications for the structural elucidation and characterization of natural products will be reviewed.
天然产物是独特化学实体的来源,具有对制药行业极具价值的特定生物活性。然而,未知结构的确定通常耗时且往往成为将天然产物开发成有效药物过程中的瓶颈。高磁场傅里叶变换质谱仪(FTMS)的高性能特性极大地缓解了结构解析瓶颈,以满足基于天然产物的候选药物越来越短的发现时间线。高场FTMS的高性能特性包括用于确定元素组成的无与伦比的质量测量精度、用于成分分离的超高质量分辨率、进行多级串联质谱分析以进行结构解析的能力以及对有限量分离物的适度灵敏度。最近已有许多利用FTMS这些特性的应用报道,用于源自陆地和海洋微生物的新型天然产物结构的解析。在本综述中,将对FTMS方法及其在天然产物结构解析和表征中的应用进行综述。