Hunan Engineering Research Center of Veterinary Drugs, College of Veterinary Medicine, Hunan Agricultural University, Changsha, China.
Anal Bioanal Chem. 2011 Mar;399(7):2475-86. doi: 10.1007/s00216-010-4629-0. Epub 2011 Jan 10.
A new strategy using hybrid ion trap/time-of-flight mass spectrometry coupled with high-performance liquid chromatography and post-acquisition data mining techniques was developed and applied to the detection and characterization of degradation products of danofloxacin. The degradation products formed under different forced conditions were separated using an ODS-C18 column with gradient elution. Accurate full-scan MS data were acquired in the first run and processed with the combination of extracted ion chromatograms and LC-UV chromatograms. These processes were able to find accurate molecular masses of possible degradation products. Then, the accurate MS/MS data acquired through data-dependent analysis mode in another run facilitated the structural elucidations of degradation products. As a result, a total of 11 degradation products of danofloxacin were detected and characterized using the developed method. Overall, this analytical strategy enables the acquisition of accurate-mass LC/MS data, search of a variety of degradation products through the post-acquisition processes, and effective structural characterization based on elemental compositions of degradation product molecules and their product ions. The ability to measure degradation products via tandem mass spectrometry coupled with accurate mass measurement, all in only two experimental runs, is one of the most attractive features of this methodology. The results demonstrate that use of the LC/MS-IT-TOF approach appears to be rapid, efficient and reliable in structural characterization of drug degradation products.
建立了一种新的策略,使用混合离子阱/飞行时间质谱联用技术结合高效液相色谱和采集后数据挖掘技术,用于检测和表征丹氟沙星的降解产物。在不同的强制条件下形成的降解产物通过 ODS-C18 柱进行梯度洗脱分离。在第一次运行中采集准确的全扫描 MS 数据,并结合提取离子色谱图和 LC-UV 色谱图进行处理。这些过程能够找到可能的降解产物的准确分子量。然后,通过另一次运行中的数据依赖分析模式采集准确的 MS/MS 数据,有助于降解产物的结构阐明。结果,使用所开发的方法共检测和表征了 11 种丹氟沙星的降解产物。总的来说,这种分析策略能够获得准确质量的 LC/MS 数据,通过采集后处理搜索各种降解产物,并基于降解产物分子的元素组成及其产物离子有效进行结构表征。通过串联质谱结合准确质量测量来测量降解产物的能力,所有这些都只需进行两次实验运行,这是该方法最具吸引力的特点之一。结果表明,LC/MS-IT-TOF 方法在药物降解产物的结构表征中似乎快速、高效且可靠。