首页> 外文期刊>Journal of Chromatography & Separation Techniques >Chromatographic and Molecular Simulation Study on the ChiralRecognition of Atracurium Besylate Positional Isomers on Cellulose Tri-3, 5 Dimethylphenycarbamate (CDMPC) Column and its Recognition Mechanism
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Chromatographic and Molecular Simulation Study on the ChiralRecognition of Atracurium Besylate Positional Isomers on Cellulose Tri-3, 5 Dimethylphenycarbamate (CDMPC) Column and its Recognition Mechanism

机译:色谱和分子模拟研究纤维素三-3,5二甲基苯甲酯(CDMPC)柱及其识别机制的纤维素盐酸盐位置异构体的阴影抗识别研究及其识别机制

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A baseline separation was achieved for the direct HPLC separation of atracurium besylate stereoisomers; atracurium trans-trans, atracurium trans-cis, and atracurium cis-cis, on a Cellulose tri- 3, 5-dimethylphenycarbamate (CDMPC) column. Acetonotrile (ANC) and Potassium hexaflourophosphate (KPF6) were used as mobile phase. The effect of organic modifier, pH, buffer concentration, temperature, and flow rate on retention time and enantioselectivity, was investigated. Binding energy differences, mode of interaction as determined by computer simulation method, were used to elucidate chiral recognition mechanism and explain the effect of organic modifier on enantioselectivity. The result suggests that the isomers of atracurium besylate could be well resolved on a CDMPC column by a 50:50 ANC: KPF6 (0.1 M, pH 3.0-3.5) mobile phase in the temperature range of 30-38°C, at a flow rate between 0.5-1, and wavelength of 280 mm. It was further observed that both ANC and KPF6 did influence enantioselectivity. From computer simulation, π-π interaction, Hydrogen bonding and Vander Waal force were noted to be responsible for chiral recognition. Results from this research are useful in designing chromatography method for separating atracurium besylate and related substances on CDMPC column and other chiral selectors.
机译:亚酸盐酸盐立体异构体的直接HPLC分离实现基线分离;在纤维素三-3,5-二甲基苯二甲酸酯(CDMPC)柱上,亚丙尿酮转移,atracurium riss-cis和atracurium cis-cis。丙酮潜力(ANC)和六氟磷酸钾(KPF6)用作流动相。研究了有机改性剂,pH,缓冲液浓度,温度和对保留时间和对映选择性的流速的影响。用计算机仿真方法确定的结合能差,相互作用方式用于阐明手性识别机制,并解释有机改性剂对对映选择性的影响。结果表明,在CDMPC柱上通过50:50 ANC:KPF6(0.1μm,pH3.0-3.5)在30-38°C的温度范围内,在CDMPC柱上可以很好地在30-38°C的情况下溶解的异构体速率在0.5-1之间,波长为280 mm。进一步观察到,ANC和KPF6都会影响对映选择性。从计算机模拟,π-π相互作用,氢键和虚空护身符被注意到对手性识别负责。该研究的结果可用于设计用于分离苯磺酸盐和相关物质的色谱法,并在CDMPC柱和其他手性选择器上进行相关物质。

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