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首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Study of the stability of promethazine enantiomers by liquid chromatography using a vancomycin-bonded chiral stationary phase
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Study of the stability of promethazine enantiomers by liquid chromatography using a vancomycin-bonded chiral stationary phase

机译:万古霉素键合手性固定相液相色谱法研究异丙嗪对映体的稳定性

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Three chiral stationary phases based on macrocyclic antibiotics (ticoplanin, vancomycin and ristoctein A) have been tested for chiral separations of promethazine. The vancomycin phase permits the best, baseline enantioseparation of promethazine, with a mobile phase of a 80:20 (v/v) mixture of methanol with a 1% aqueous triethylamine acetate buffer of pH 4.1 and with the analysis time nor exceeding 15 min. The limits of detection amount to 27.5 and 31.0 ng/ml for the earlier and later eluting enantiomers, respectively. This separation system, that also permits a sufficient resolution between the promethazine enantiomers and their degradation products, has further been used for the monitoring of the effects of light, temperature and the promethazine concentration in solution on the stability of methanolic promethazine solutions over a period of 19 days. It has been found that the stability of more concentrated solutions is primarily affected by the temperature, whereas the effects of the temperature and light are comparable with more dilute solutions. After 19 days, a solution of 0.5 mg/ml promethazine stored in darkness at a low temperature still contained 84.0% of the original amount of the enantiomers; this value was 89.6% for a solution with the ten times lower promethazine concentration. If the solutions were stored in darkness but at laboratory temperature, the respective values decreased to 38.1 and 62.6% and for the solutions exposed to light at laboratory temperature they decreased even more to 36.7 and 52.6% of the initial promethazine amount.
机译:已测试了基于大环抗生素的三个手性固定相(替卡普宁,万古霉素和瑞斯托汀A)用于异丙嗪的手性分离。万古霉素相可实现异丙嗪的最佳基线对映体分离,流动相为80:20(v / v)甲醇与1%pH 4.1的三乙胺乙酸盐水溶液的混合物,分析时间不超过15分钟。对于较早和较晚洗脱的对映异构体,检出限分别为27.5和31.0 ng / ml。该分离系统还可以在异丙嗪对映体及其降解产物之间实现足够的分离度,该系统已进一步用于监测光,温度和溶液中异丙嗪浓度对甲醇异丙嗪溶液在一段时间内稳定性的影响。 19天。已经发现,更浓溶液的稳定性主要受温度影响,而温度和光的影响与更稀溶液可比。 19天后,在黑暗中于低温下储存的0.5 mg / ml异丙嗪溶液仍含有对映体原始量的84.0%;对于异丙嗪浓度低十倍的溶液,该值为89.6%。如果溶液在黑暗中但在实验室温度下储存,则各自的值降低到38.1和62.6%,而在实验室温度下暴露于光下的溶液,它们的降低量甚至更多,降到初始异丙嗪量的36.7和52.6%。

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