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手性毛细管电泳法拆分氧氟沙星和奥硝唑对映体及其包结配合物的计算模拟

Enantioselective analysis of ofloxacin and ornidazole in pharmaceutical formulations by capillary electrophoresis using single chiral selector and computational calculation of their inclusion complexes.

机构信息

School of Chemical Sciences, Universiti Sains Malaysia, 11800 Penang, Malaysia.

出版信息

Anal Chim Acta. 2010 Aug 3;674(2):249-55. doi: 10.1016/j.aca.2010.06.046. Epub 2010 Jul 6.

Abstract

A capillary electrophoretic method for the separation of the enantiomers of both ofloxacin and ornidazole is described. Several parameters affecting the separation were studied, including the type and concentration of chiral selector, buffer pH, voltage and temperature. Good chiral separation of the racemic mixtures was achieved in less than 16 min with resolution factors Rs=5.45 and 6.28 for ofloxacin and ornidazole enantiomers, respectively. Separation was conducted using a bare fused-silica capillary and a background electrolyte (BGE) of 50 mM H(3)PO(4)-1 M tris solution; pH 1.85; containing 30 mg mL(-1) of sulfated-beta-cyclodextrin (S-beta-CD). The separation was carried out in reversed polarity mode at 25 degrees C, 18 kV, detection wavelength at 230 nm and using hydrodynamic injection for 15 s. Acceptable validation criteria for selectivity, linearity, precision, and accuracy were studied. The limits of detection (LOD) and limits of quantitation (LOQ) of the enantiomers (ofloxacin enantiomer 1 (OF-E1), ofloxacin enantiomer 2 (OF-E2), ornidazole enantiomer 1 (OR-E1) and ornidazole enantiomer 2 (OR-E2)) were (0.52, 0.46, 0.54, 0.89) and (1.59, 1.40, 3.07, 2.70) microg mL(-1), respectively. The proposed method was successfully applied to the assay of enantiomers of both ofloxacin and ornidazole in pharmaceutical formulations. The computational calculations for the enantiomeric inclusion complexes rationalized the reasons for the different migration times between the ofloxacin and ornidazole enantiomers.

摘要

描述了一种用于分离氧氟沙星和奥硝唑对映异构体的毛细管电泳方法。研究了影响分离的多个参数,包括手性选择剂的类型和浓度、缓冲液 pH 值、电压和温度。在不到 16 分钟的时间内,通过使用 50mM H 3 PO 4 -1M 三羟甲基氨基甲烷溶液作为背景电解质(BGE),pH 值为 1.85,其中含有 30mg·mL -1 的硫酸化-β-环糊精(S-β-CD),可以实现对映体混合物的良好手性分离,氧氟沙星和奥硝唑对映体的分离度因子 Rs 分别为 5.45 和 6.28。分离在反极性模式下进行,温度为 25°C,电压为 18kV,检测波长为 230nm,采用 15s 的液压进样。研究了选择性、线性、精密度和准确性的可接受验证标准。对映体(氧氟沙星对映体 1(OF-E1)、氧氟沙星对映体 2(OF-E2)、奥硝唑对映体 1(OR-E1)和奥硝唑对映体 2(OR-E2))的检测限(LOD)和定量限(LOQ)分别为(0.52、0.46、0.54、0.89)和(1.59、1.40、3.07、2.70)μg·mL -1。该方法成功应用于药物制剂中氧氟沙星和奥硝唑对映体的测定。对手性包合络合物的计算计算解释了氧氟沙星和奥硝唑对映体之间不同迁移时间的原因。

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