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两种低流速接口用于亲和毛细管电泳-质谱法测量迁移率和稳定常数的比较。

Comparison of two low flow interfaces for measurement of mobilities and stability constants by affinity capillary electrophoresis-mass spectrometry.

机构信息

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo n. 2, 166 10 Prague 6, Czech Republic; Faculty of Science, Charles University, Department of Analytical Chemistry, Albertov 6, 128 43 Prague 2, Czech Republic.

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo n. 2, 166 10 Prague 6, Czech Republic.

出版信息

J Chromatogr A. 2018 Sep 21;1568:197-204. doi: 10.1016/j.chroma.2018.07.014. Epub 2018 Jul 20.

Abstract

Affinity capillary electrophoresis (ACE) is typically used for the determination of stability constant, K, of weak to moderately strong complexes. Sensitive detection such as mass spectrometry (MS) is required for extension of ACE methodology for estimation of K of stronger complexes. Consequently, an efficient interface for hyphenation of CE with MS detection is necessary. For evaluation of interfaces for electrospray ionization mass spectrometric (ESI/MS) detection in ACE conditions, potassium-crown ether complexation was used as model system. The effective mobilities of the crown ether ligands and the K of their potassium complexes were measured/determined by ACE-ESI/MS using two lab-made interfaces: (i) a sheathless porous tip CE-ESI/MS interface and (ii) a nano-sheath liquid flow CE-ESI/MS interface, and, in turn, compared with those obtained by ACE with UV spectrophotometric detection. Apparent stability constant of potassium-crown ether complexes in 60/40 (v/v) methanol/water mixed solvent, pH* 5.5, was about 1300 L/mol for dibenzo-18-crown-6, 1600 L/mol for benzo-18-crown-6 and 5200 L/mol for 18-crown-6 ligands, respectively. It was observed that electrophoretic mobilities from CE-MS experiments differ from reference values determined by UV detection by ∼7% depending on the CE-MS interface used. Good agreement of CE-MS and CE-UV data was achieved for nano-sheath liquid flow interface, in which the spray potential and the CE separation potential can be effectively decoupled. As for sheathless porous tip interface, a correction procedure involving a mobility marker has been proposed. It provides typically only ca. 1% difference of effective mobilities and K values obtained from CE-MS data as compared to those received by the reference ACE-UV method.

摘要

亲和毛细管电泳(ACE)通常用于确定弱至中等强度配合物的稳定常数 K。为了将 ACE 方法扩展到估计更强配合物的 K 值,需要进行质谱(MS)等灵敏检测。因此,需要高效的接口将 CE 与 MS 检测联用。为了评估在 ACE 条件下用于电喷雾电离质谱(ESI/MS)检测的接口,使用钾-冠醚络合作为模型体系。使用两种自制接口:(i)无鞘多孔尖端 CE-ESI/MS 接口和(ii)纳米鞘液流 CE-ESI/MS 接口,通过 ACE-ESI/MS 测量/确定冠醚配体的有效迁移率和其钾配合物的 K 值,并与通过 ACE 与紫外分光光度检测获得的值进行比较。在 60/40(v/v)甲醇/水混合溶剂、pH*5.5 的条件下,二苯并-18-冠-6、苯并-18-冠-6 和 18-冠-6 配体的钾络合物的表观稳定常数分别约为 1300 L/mol、1600 L/mol 和 5200 L/mol。观察到从 CE-MS 实验得到的电泳迁移率与通过 UV 检测确定的参考值相差约 7%,这取决于所使用的 CE-MS 接口。对于纳米鞘液流接口,CE-MS 和 CE-UV 数据之间具有良好的一致性,因为可以有效地分离喷雾电势和 CE 分离电势。对于无鞘多孔尖端接口,已经提出了一种涉及迁移率标记的校正程序。与参考 ACE-UV 方法相比,它通常仅能使从 CE-MS 数据获得的有效迁移率和 K 值产生约 1%的差异。

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