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羟羧氧酰胺菌素在水溶液中的降解及差向异构化动力学

Degradation and epimerization kinetics of moxalactam in aqueous solution.

作者信息

Hashimoto N, Tasaki T, Tanaka H

出版信息

J Pharm Sci. 1984 Mar;73(3):369-73. doi: 10.1002/jps.2600730320.

Abstract

The kinetics of epimerization and degradation of moxalactam in aqueous solution was investigated by HPLC. The pH-rate profiles of the degradation and epimerization were determined separately over the pH range of 1.0-11.5 at 37 degrees C and constant ionic strength 0.5. The degradation and simultaneous epimerization were followed by measuring both of the residual R- and S-epimers of moxalactam and were found to follow pseudo-first-order kinetics. The degradation was subjected to hydrogen ion and hydroxide ion catalyses and influenced by the dissociation of the side chain phenolic group. The epimerization rates were influenced significantly in the acidic region by the dissociation of the side chain carboxylic acid group and in the basic region by hydroxide ion catalysis. The pH-degradation rate profile of moxalactam showed a minimum degradation rate constant between pH 4.0 and 6.0. The pH-epimerization rate profiles of moxalactam showed minimum epimerization rate constants at pH 7.0. The epimerization rate constants of the R- and S-epimers were not very different.

摘要

采用高效液相色谱法研究了水溶液中莫西沙星的差向异构化和降解动力学。在37℃和离子强度0.5恒定的条件下,分别测定了1.0 - 11.5 pH范围内降解和差向异构化的pH-速率曲线。通过测量莫西沙星的残留R-和S-差向异构体来跟踪降解和同时发生的差向异构化,发现其遵循准一级动力学。降解受氢离子和氢氧根离子催化,并受侧链酚基解离的影响。在酸性区域,差向异构化速率受侧链羧酸基团解离的显著影响,在碱性区域受氢氧根离子催化的影响。莫西沙星的pH-降解速率曲线在pH 4.0至6.0之间显示出最低降解速率常数。莫西沙星的pH-差向异构化速率曲线在pH 7.0时显示出最低差向异构化速率常数。R-和S-差向异构体的差向异构化速率常数差异不大。

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