首页> 外文期刊>European journal of mass spectrometry >Pre-electrospray ionisation manifold methylation and post-electrospray ionisation manifold cleavage/ion cluster formation observed during electrospray ionisation of chloramphenicol in solutions of methanol and acetonitrile for liquid chromatography-mass spectrometry employing a commercial quadrupole ion trap mass analyser
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Pre-electrospray ionisation manifold methylation and post-electrospray ionisation manifold cleavage/ion cluster formation observed during electrospray ionisation of chloramphenicol in solutions of methanol and acetonitrile for liquid chromatography-mass spectrometry employing a commercial quadrupole ion trap mass analyser

机译:氯霉素在甲醇和乙腈溶液中电喷雾电离过程中观察到的电喷雾前电离歧管甲基化和电喷雾后电离歧管裂解/离子簇形成,用于使用商用四极离子阱质量分析仪的液相色谱-质谱

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摘要

We have observed unusual mass spectra of chloramphenicol (CAP) in solutions of methanol or acetonitrile showing intense ions at m/z 297, m/z 311, m/z 325 and m/z 339. The ions observed were different from those which are traditionally observed in the full scan electro-spray ionization (ESI) mass spectra of CAP with ions of m/z 321, m/z 323 and m/z 325. We have evidence to show that this process starts with off-line methylation of CAP in solutions of methanol or acetonitrile to give m/z 339. Investigations using nuclear magnetic resonance spectroscopy showed that there is a methylene group somewhere within the CAP molecule but not attached to any of the carbon atoms when the CAP is dissolved in methanol or acetonitrile before infusion into the mass spectrometer. The possible locations of attachment were speculated to be the electronegative atoms apart from the chlorine atoms due to valence considerations. The methylene group is attached to the nitrogen atom and forms a bond as observed in the MS/MS spectra of m/z 297, m/z 311, m/z 325 and m/z 339 which give m/z 183 as the base peak in all cases. Further experiments showed that there is cleavage of the methylated CAP molecule followed by cluster ion formation involving addition of methylene groups to the CAP fragment with m/z 183 to produce ions of m/z including 297, 311, 325 and 339. This process occurs in the mass spectrometer in the region housing the tube lens and is triggered when the ions are accelerated through this region by application of a negative tube lens offset voltage. This region affords collision of the charged droplets with a collision gas in this case nitrogen to strip the droplets of their solvent molecules. Experiments to follow the intensities of m/z 183, m/z 311, m/z 321, m/z 323, m/z 325 and m/z 339 as the tube lens offset voltage was varied were done in which the intensities of m/z 311, m/z 325 and m/z 339 were observed to be at their peak when the tube lens offset voltage was set at -40 V. When the tube lens off set voltage is swung to +40V, thus decelerating the ions through the capillary skimmer region via the tube lens, the traditionally observed spectra with m/z321, m/z323 and m/z325 were observed.
机译:我们已经观察到了甲醇或乙腈溶液中氯霉素(CAP)的不寻常质谱图,它们在m / z 297,m / z 311,m / z 325和m / z 339处显示强离子。所观察到的离子与传统上是在m / z 321,m / z 323和m / z 325离子的CAP的全扫描电喷雾电离(ESI)质谱图中观察到的。我们有证据表明,此过程始于离线甲基化CAP在甲醇或乙腈溶液中得到m / z339。使用核磁共振波谱的研究表明,当CAP溶解在甲醇或乙腈中时,CAP分子内某处存在亚甲基,但未连接至任何碳原子在注入质谱仪之前。由于价态的考虑,推测可能的连接位置是除氯原子之外的负电性原子。在m / z 297,m / z 311,m / z 325和m / z 339的MS / MS光谱中观察到的亚甲基连接到氮原子上并形成键,从而得到m / z 183作为碱在所有情况下都达到峰值。进一步的实验表明,甲基化的CAP分子发生裂解,随后形成团簇离子,涉及在m / z 183处向CAP片段中添加亚甲基以产生m / z离子,包括297、311、325和339。在质谱仪中位于管镜的区域中,并且当离子通过施加负管镜偏置电压而加速通过该区域时被触发。该区域使带电液滴与碰撞气体发生碰撞,在这种情况下为氮气以剥离其溶剂分子的液滴。随着管透镜偏移电压的变化,进行了跟踪m / z 183,m / z 311,m / z 321,m / z 323,m / z 325和m / z 339的强度的实验,其中当将筒形透镜偏置电压设置为-40 V时,观察到m / z 311,m / z 325和m / z 339处于峰值。当筒形透镜偏离设置电压变为+ 40V时,则使离子通过管透镜穿过毛细管分离器区域,观察到传统观察到的m / z321,m / z323和m / z325光谱。

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