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使用阳离子环糊精的非水电动色谱与电喷雾电离质谱联用

Coupling of non-aqueous electrokinetic chromatography using cationic cyclodextrins with electrospray ionization mass spectrometry.

作者信息

Mol Roelof, de Jong Gerhardus J, Somsen Govert W

机构信息

Biomedical Analysis, Utrecht University, P.O. Box 80082, NL-3508 TB Utrecht, The Netherlands.

出版信息

Rapid Commun Mass Spectrom. 2008;22(6):790-6. doi: 10.1002/rcm.3431.

DOI:10.1002/rcm.3431
PMID:18275093
Abstract

Non-aqueous electrokinetic chromatography (NAEKC) using cationic cyclodextrins (CDs) was coupled to electrospray ionization mass spectrometry (ESI-MS). A methanolic background electrolyte (BGE) was used which contained the hydrochloride salts of the single-isomer derivative cyclodextrins 6-monodeoxy-6-mono(2-hydroxy)propylamino-beta-cyclodextrin (IPA-beta-CD) or 6-monodeoxy-6-mono(3-hydroxy)propylamino-beta-cyclodextrin (PA-beta-CD). Applying a reversed capillary electrophoresis (CE) polarity (-30 kV), efficient separation of negatively charged compounds was achieved with plate numbers of up to 190,000. PA-beta-CD appeared to be the most suitable for the separation of various acidic drugs while also providing a high chiral selectivity. Analyte detection was achieved by ESI-MS in the negative-ion mode using a sheath-liquid interface. In order to prevent current drops caused by the cathodic electroosmotic flow, a pressure of 15 mbar was applied on the inlet vial during NAEKC/MS analysis. The effect of the cationic CDs on the MS signal intensities of acidic test drugs was thoroughly studied. When a voltage is applied across the CE capillary, the overall mobility of the cationic CDs is towards the inlet vial so that no CD molecules enter the ion source. The chloride counter ions of the CDs, which migrated towards the capillary outlet, were found to cause ionization suppression, although significant analyte signals could still be detected. Depending on the CD concentration in the BGE, limits of detection for acidic drugs were in the 50-400 ng/mL range in full-scan mode.

摘要

使用阳离子环糊精(CDs)的非水电动力学色谱法(NAEKC)与电喷雾电离质谱法(ESI-MS)联用。使用了含单异构体衍生物环糊精6-单脱氧-6-单(2-羟基)丙基氨基-β-环糊精(IPA-β-CD)或6-单脱氧-6-单(3-羟基)丙基氨基-β-环糊精(PA-β-CD)盐酸盐的甲醇背景电解质(BGE)。施加反向毛细管电泳(CE)极性(-30 kV),实现了对带负电荷化合物的高效分离,塔板数高达190,000。PA-β-CD似乎最适合分离各种酸性药物,同时还具有高的手性选择性。使用鞘液接口通过ESI-MS在负离子模式下实现分析物检测。为了防止阴极电渗流引起的电流下降,在NAEKC/MS分析期间对进样瓶施加15 mbar的压力。深入研究了阳离子CDs对酸性测试药物MS信号强度的影响。当在CE毛细管两端施加电压时,阳离子CDs的整体迁移方向是朝向进样瓶,因此没有CD分子进入离子源。发现向毛细管出口迁移的CDs的氯离子会导致电离抑制,尽管仍能检测到显著的分析物信号。根据BGE中CD的浓度,在全扫描模式下酸性药物的检测限在50-400 ng/mL范围内。

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