以羟乙基纤维素为动态包衣剂,建立了一种新的、简单的动态包衣毛细管电泳方法,用于米格列奈对映体的手性分离和定量。

K. M. Azzam
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引用次数: 2

摘要

本文描述了一种对裸熔融毛细管进行动态涂覆后的米格列尼(MTG)对映体进行手性分离和定量的毛细管电泳方法(小于9.5 min),分辨率值Rs = 5.25,峰形优异。本研究旨在建立并验证一种新的、简单的、以羟乙基纤维素(HEC)包衣剂动态包衣毛细管壁后,用CE分离和定量MTG对映体的方法。采用0.1 M氢氧化钠、水、含HEC水溶液和羟丙基-γ-环糊精(HP-γ-CD)快速冲洗,对毛细管内表面进行动态涂覆。此外,缓冲液除了用作分离介质外,还用于动态包衣工艺。采用动态涂层后,峰的对称性得到改善。在50 mM Na₂HPO₄- 1 M H₃PO₄溶液的背景电解质(BGE)中涂覆HEC后,采用裸熔融石英毛细管进行分离;pH值8.5;HP-γ-CD和HEC各含25 - 25 mg mL-1。动态镀膜不仅改善了迁移时间,而且提高了峰面积精度。吸附的包衣剂与MTG的相互作用很小,在微碱性条件下(pH 8.5)具有良好的分离性能和重复性。研究了选择性、线性度、精密度和准确度的可接受验证标准。该方法可有效地应用于中药制剂中MTG对映体的测定。此外,它被证明具有简单、快速和准确的优点。
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A novel and simple dynamic coating capillary electrophoresis method for the chiral separation and quantification of mitiglinide enantiomers using hydroxyethyl cellulose as a dynamic coating agent.
A capillary electrophoretic method for the chiral separation and quantification of mitiglinide (MTG) enantiomers is described (less than 9.5 min) with resolution value Rs = 5.25 and with excellent peak shapes after performing the dynamically coating for the bare fused capillary. The study aims to develop and validate a novel and simple method for the separation and quantification of MTG enantiomers using CE after dynamic coating the capillary wall using the hydroxyethyl cellulose (HEC) coating agent. Dynamic coating procedure of the capillary inner surface is conducted via rapid flushes using 0.1 M sodium hydroxide, water, and aqueous solution containing HEC, and hydroxypropyl-γ-cyclodextrin (HP-γ-CD). Besides buffer was used for the dynamic coating process in addition to its use as the separation medium. When the dynamic coating was used, peak symmetry was improved. A bare fused-silica capillary was used throughout the separation after being coated using HEC dissolved in the background electrolyte (BGE) of 50 mM Na₂HPO₄ - 1 M H₃PO₄ solution; pH 8.5; containing 25 25 mg mL-1 of each HP-γ-CD and HEC. The dynamic coating procedure achieved an improvement in migration time as well as peak area precision. The adsorbed coating agent showed slight interactions with MTG, providing efficient separation with outstanding durability and reproducibility at slightly alkaline conditions (pH 8.5). Acceptable validation criteria for selectivity, linearity, precision, and accuracy were also studied. The newly developed method was effectively applied to the assay of enantiomers of MTG in pharmaceutical formulations. Additionally, it was proven to have the advantages of being simple, rapid, and accurate.
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