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Stability of ricobendazole in aqueous solutions

机译:利苯达唑在水溶液中的稳定性

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摘要

The chemical stability of ricobendazole (RBZ) was investigated using a stability-indicating high performance liquid chromatographic (HPLC) assay with ultraviolet detection. The degradation kinetics of RBZ in aqueous solution was evaluated as a function of pH, buffer strength and temperature. The oxidation reaction in hydrogen peroxide solution was also studied. Degradation products were analyzed by mass spectroscopy and degradation pathways are proposed. Degradation of RBZ followed pseudo first-order kinetics and Arrhenius behavior over the temperature range 24-55 °C. A V-shaped pH-rate profile over the pH range 2-12 was observed with maximum stability at pH 4.8. The shape of the pH-rate profile was rationalized by catalytic effects of various components in the solution on each RBZ species. At pH 11 the activation energy for hydrolysis was 79.5 kJ/mol, and phosphate catalysis was not observed. Oxidation occurred in hydrogen peroxide solutions and was catalyzed by the presence of copper (Cu2+) ions. Ricobendazole amine and albendazole sulfone were identified by MS assay to be the degradation products of hydrolysis and oxidation respectively.
机译:使用具有紫外检测功能的稳定性指示高效液相色谱(HPLC)测定法研究了利多拉达唑(RBZ)的化学稳定性。评估RBZ在水溶液中的降解动力学,作为pH,缓冲液强度和温度的函数。还研究了过氧化氢溶液中的氧化反应。通过质谱分析降解产物,并提出降解途径。在24-55°C的温度范围内,RBZ的降解遵循伪一级动力学和Arrhenius行为。观察到在pH范围2-12的V形pH速率分布,在pH 4.8时具有最大的稳定性。通过溶液中各种组分对每种RBZ物种的催化作用,可以合理地调节pH速率曲线的形状。在pH 11时,水解的活化能为79.5 kJ / mol,未观察到磷酸盐催化。氧化反应发生在过氧化氢溶液中,并被铜(Cu2 +)离子催化。通过质谱法测定了多菌灵胺和阿苯达唑砜分别为水解和氧化的降解产物。

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