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The effect of drift gas on the separation of active pharmaceutical ingredients and impurities by ion mobility-mass spectrometry

机译:漂移气对离子淌度-质谱法分离活性药物成分和杂质的影响

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摘要

The effect of drift gas and binary gas mixtures on the separation of active pharmaceutical ingredients and related compounds has been investigated for the first time using tri-wave ion mobility-mass spectrometry. The drift times for [M+H]~+ ions were measured in argon, carbon dioxide, nitrogen, helium and binary mixtures of these gases as a function of pressure and drift gas composition. At the same drift cell pressure the drift times of the protonated ions decreased in order; carbon dioxide>argon>nitrogen>helium. The drift times of compounds in the different drift gases were dependent on the polarizability of the drift gas, the size of the drift gas and the reduced mass of the analyte ion/drift gas pair. Resolution of the active pharmaceutical ingredients Lamotrigine and Rosiglitazone increased with drift cell pressure for argon and nitrogen, but showed no significant increase in carbon dioxide. Enhanced selectivity is demonstrated for the separation of pharmaceutical components using binary drift gas mixtures in tri-wave IM-MS.
机译:漂移气体和二元气体混合物对活性药物成分和相关化合物分离的影响已首次使用三波离子淌度质谱进行了研究。 [M + H]〜+离子的漂移时间是在氩气,二氧化碳,氮气,氦气和这些气体的二元混合物中作为压力和漂移气体成分的函数进行测量的。在相同的漂移室压力下,质子化离子的漂移时间依次减少。二氧化碳>氩气>氮气>氦气。化合物在不同漂移气体中的漂移时间取决于漂移气体的极化性,漂移气体的大小以及分析物离子/漂移气体对的减少质量。活性药物成分拉莫三嗪和罗格列酮的分离度随氩气和氮气的漂移池压力的增加而增加,但二氧化碳却没有显着增加。在三波IM-MS中使用二元漂移气体混合物分离药物成分时,具有更高的选择性。

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