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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Potentialities of ITP-CZE method with diode array detection for enantiomeric purity control of dexbrompheniramine in pharmaceuticals.
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Potentialities of ITP-CZE method with diode array detection for enantiomeric purity control of dexbrompheniramine in pharmaceuticals.

机译:带有二极管阵列检测的ITP-CZE方法在药物中右溴芬拉明对映体纯度控制方面的潜力。

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摘要

The present work illustrates potentialities of on-line combined isotachophoresis-capillary zone electrophoresis (ITP-CZE) separation techniques coupled with on-capillary diode array detector (DAD) for enantiomeric purity testing of drugs in pharmaceuticals. The general advantages of the proposed method are its (i) high selectivity, (ii) low concentration limit of detection (LOD) obtainable, (iii) enhanced sample loadability, and (iv) enhanced reliability. For separation of brompheniramine (BP) enantiomers, serving as model analytes, carboxyethyl-beta-cyclodextrin (CE-beta-CD) was appropriate chiral selector providing complete enantioresolution. Given by a high sample load capacity (30 microl sample injection volume) and preconcentration of the analytes in ITP stage, concentration LOD of levobrompheniramine (LBP), serving as model impurity, was 2.5 ng/ml (8 x 10(-9)mol/l). Such separation and detection conditions enabled to easily determine LBP in samples containing a 10(3) excess of dexbrompheniramine (DBP). DAD detection in comparison with single wavelength detection can enhance value of analytical information when analytes and interferents have different spectra (distinguishing impurities in analyte zone, confirmation of migration positions of migrants). In this context purity of BP zones was confirmed with higher reliability in pharmaceutical sample. Moreover, distinguishing the trace analyte signal superposed on the baseline noise was provided with sufficient reliability (for this purpose the background correction and smoothing procedure had to be applied to the raw DAD spectra). Successful validation and application of the proposed ITP-CZE-DAD method suggest its routine use for the enantiomeric purity testing of pharmaceuticals.
机译:本工作说明了在线结合的等速电泳-毛细管区带电泳(ITP-CZE)分离技术与毛细管上二极管阵列检测器(DAD)结合的潜力,可用于药物中药物的对映体纯度测试。所提出的方法的一般优点是:(i)高选择性,(ii)可获得低浓度的检测限(LOD),(iii)增强的样品上样能力和(iv)增强的可靠性。为了分离作为模型分析物的溴苯那敏(BP)对映异构体,羧乙基-β-环糊精(CE-β-CD)是合适的手性选择剂,可提供完整的对映体拆分。鉴于其高的样品负载能力(进样量为30微升样品量)和ITP阶段的分析物预浓缩,用作模型杂质的左溴苯那敏(LBP)的浓度LOD为2.5 ng / ml(8 x 10(-9)mol / l)。这样的分离和检测条件能够轻松确定含有10(3)过量右旋苯那敏(DBP)的样品中的LBP。当分析物和干扰物具有不同的光谱(区分分析物区域中的杂质,确认迁移物的迁移位置)时,与单波长检测相比,DAD检测可以提高分析信息的价值。在这种情况下,在药品样品中,以较高的可靠性确定了BP区的纯度。此外,以足够的可靠性提供区分叠加在基线噪声上的痕量分析物信号的可靠性(为此,必须将背景校正和平滑过程应用于原始DAD光谱)。所提出的ITP-CZE-DAD方法的成功验证和应用表明,该方法可常规用于药物的对映体纯度测试。

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