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[用于药物分析的无鞘接口耦合毛细管电泳 - 电喷雾电离质谱法]

[Coupling capillary electrophoresis-electrospray ionization mass spectrometry with sheathless interface for drug analysis].

作者信息

Zhang Hanzhi, Li Feng, Kang Jingwu

机构信息

1. State Key Laboratory of Bioorganic and Natural Products Chemistry,Shanghai Institute of Organic Chemistry,Chinese Academy of Sciences,Shanghai 200032,China;3. Abiochem Biotechnology Co.,Ltd.,Shanghai 200241,China.

2. Xi'an Key Laboratory of Food Safety Testing and Risk Assessment,School of Chemical Engineering,Xi'an University,Xi'an 710065,China.

出版信息

Se Pu. 2023 Feb;41(2):160-167. doi: 10.3724/SP.J.1123.2022.07015.

Abstract

Capillary electrophoresis-mass spectrometry (CE-MS) combines the advantages of capillary electrophoresis, such as the high separation efficiency and low sample consumption, and the high detection sensitivity of mass spectrometry and the ability for providing the structural information for structure elucidation of unknown components. However, the interface technology for coupling capillary electrophoresis and mass spectrometry is still not well resolved. In the present work, we explored the application of the sheathless CE-MS interface which was prepared by gold foil-wrapped CE separation column tip directly as a spray electrode for the analysis of five tyrosine kinase inhibitors, namely sunitinib, imatinib mesylate, gefitinib, dasatinib and erlotinib. This interface integrates separation and electrospray ionization in one capillary, which is easy to manufacture, low in cost, and can be produced in batches. We found that using the nonaqueous CE separation mode can not only achieve baseline separation of five tyrosine kinase inhibitors, but also obtain stable mass spectrometry signals. First, we investigated the effect of the electrolyte solution composition on the separation. The optimized background electrolyte composition was obtained: 2% (v/v) acetic acid and 5 mmol/L ammonium acetate in acetonitrile-methanol (80∶20, v/v). Under optimized conditions, the five kinase inhibitors could be baseline separated, meantime, the sheathless interface could also maintain stable electrospray for a long time. The relative standard deviation (RSD) values of the intraday and interday repeatability of the analyte retention times were less than 0.5% and 0.8%, respectively, and the RSD value between interface batches is less than 2.6%. Compared with CE-MS with aqueous phase, the separation column efficiency of the five tyrosine kinase inhibitors under nonaqueous phase conditions is higher, the detection sensitivity is higher, and the absolute detection limit reaches amol level. In addition, we evaluated the sheathless interface with various organic acids, such as palaflin A, salvianolic acid C, and rosmarinic acid, as well as hydrophobic macrolide antibiotics, azithromycin, erythromycin, and sporin A, good separation effect and mass spectrometric detection results can be obtained.

摘要

毛细管电泳-质谱联用(CE-MS)结合了毛细管电泳的优势,如高分离效率和低样品消耗,以及质谱的高检测灵敏度和为未知成分结构解析提供结构信息的能力。然而,毛细管电泳与质谱联用的接口技术仍未得到很好的解决。在本工作中,我们探索了无鞘CE-MS接口的应用,该接口由金箔包裹的CE分离柱尖端直接制备作为喷雾电极,用于分析五种酪氨酸激酶抑制剂,即舒尼替尼、甲磺酸伊马替尼、吉非替尼、达沙替尼和厄洛替尼。该接口在一根毛细管中集成了分离和电喷雾电离,易于制造,成本低,且可批量生产。我们发现,采用非水CE分离模式不仅可以实现五种酪氨酸激酶抑制剂的基线分离,还能获得稳定的质谱信号。首先,我们研究了电解质溶液组成对分离的影响。获得了优化的背景电解质组成:乙腈-甲醇(80∶20,v/v)中2%(v/v)的乙酸和5 mmol/L的乙酸铵。在优化条件下,五种激酶抑制剂能够实现基线分离,同时,无鞘接口也能长时间保持稳定的电喷雾。分析物保留时间的日内和日间重复性相对标准偏差(RSD)值分别小于0.5%和0.8%,接口批次间的RSD值小于2.6%。与水相CE-MS相比,非水相条件下五种酪氨酸激酶抑制剂的分离柱效率更高,检测灵敏度更高,绝对检测限达到飞摩尔水平。此外,我们用各种有机酸,如帕拉弗林A、丹酚酸C和迷迭香酸,以及疏水性大环内酯类抗生素阿奇霉素、红霉素和sporin A对无鞘接口进行了评估,均能获得良好的分离效果和质谱检测结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8023/9892973/347b0f2ceba5/cjc-41-02-160-img_1.jpg

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