Bristol-Myers Squibb Analytical Research and Development, New Brunswick, NJ, USA.
J Am Soc Mass Spectrom. 2011 Jan;22(1):173-8. doi: 10.1007/s13361-010-0001-z. Epub 2011 Jan 20.
A source that couples the desorption ionization by charge exchange (DICE) and desorption electrospray ionization (DESI) techniques together was demonstrated to broaden the range of compounds that can be analyzed in a single mass spectrometric experiment under ambient conditions. A tee union was used to mix the spray reagents into a partially immiscible blend before this mixture was passed through a conventional electrospray (ES) probe capillary. Using this technique, compounds that are ionized more efficiently by the DICE method and those that are ionized better with the DESI procedure could be analyzed simultaneously. For example, hydroquinone, which is not detected when subjected to DESI-MS in the positive-ion generation mode, or the sodium adduct of guaifenesin, which is not detected when examined by DICE-MS, could both be detected in one experiment when the two techniques were combined. The combined technique was able to generate the molecular ion, proton and metal adduct from the same compound. When coupled to a tandem mass spectrometer, the combined source enabled the generation of product ion spectra from the molecular ion and the M + H or M + metal ions of the same compound without the need to physically change the source from DICE to DESI. The ability to record CID spectra of both the molecular ion and adduct ions in a single mass spectrometric experiment adds a new dimension to the array of mass spectrometric methods available for structural studies.
一种将电荷交换解吸电离 (DICE) 和解吸电喷雾电离 (DESI) 技术相结合的源,被证明可以拓宽在环境条件下单次质谱实验中可以分析的化合物范围。在将该混合物通过常规电喷雾 (ES) 探头毛细管之前,使用三通将喷雾试剂混合到部分不混溶的混合物中。使用这种技术,可以同时分析通过 DICE 方法更有效地离子化的化合物和通过 DESI 程序更好地离子化的化合物。例如,当在正离子生成模式下进行 DESI-MS 时,对氢醌没有检测到,或者当用 DICE-MS 检查时,对愈创甘油醚的钠加合物没有检测到,当两种技术结合使用时,都可以在一个实验中检测到。该联合技术能够从同一种化合物中生成分子离子、质子和金属加合物。当与串联质谱仪耦合时,该组合源能够在无需从 DICE 到 DESI 物理改变源的情况下,从同一种化合物的分子离子和 M + H 或 M + 金属 离子生成产物离子谱。在单次质谱实验中记录分子离子和加合物离子的 CID 谱的能力为结构研究提供了一系列新的质谱方法。