Tsuji A, Nakashima E, Deguchi Y, Nishide K, Shimizu T, Horiuchi S, Ishikawa K, Yamana T
J Pharm Sci. 1981 Oct;70(10):1120-8. doi: 10.1002/jps.2600701008.
The degradation kinetics and mechanism of a new, orally effective cephalosporin derivative, cefadroxil, in aqueous solution were investigated at pH 2.51-11.5 at 35 degrees and ionic strength 0.5. The degradation rates were determined by high=pressure liquid chromatography. At constant pH and temperature, the degradation followed first-order kinetics and a log k-pH profile was presented. The shape of the rate-pH profile resembled that for cephalexin or cephradine under the same conditions. Citrate and phosphate buffers enhanced general acid and base catalysis of the degradation. In aqueous solution, cefadroxil was shown to degrade by three parallel reactions: (a) intramolecular aminolysis by the C-7 side-chain amino group on the beta-lactam moiety, (b) water-catalyzed or spontaneous hydrolysis, and (c) beta-lactam cleavage by the nucleophilic attack of hydroxide ion. In neutral and weak alkaline solutions, the main degradation products were two piperazine-2, 5-diones and 3-hydroxy-4-methyl-2(5H)-thiophenone, the former being formed from Reaction a, while the latter arose via the degradation pathways of Reaction b and/or c.
在35℃、离子强度0.5及pH 2.51 - 11.5条件下,研究了一种新型口服有效头孢菌素衍生物头孢羟氨苄在水溶液中的降解动力学及降解机制。降解速率通过高压液相色谱法测定。在恒定pH值和温度下,降解遵循一级动力学,并给出了log k - pH曲线。在相同条件下,该速率 - pH曲线的形状与头孢氨苄或头孢拉定的相似。柠檬酸盐和磷酸盐缓冲液增强了降解反应的广义酸碱催化作用。在水溶液中,头孢羟氨苄通过三个平行反应降解:(a) β - 内酰胺部分的C - 7侧链氨基进行分子内氨解;(b) 水催化或自发水解;(c) 氢氧根离子亲核进攻导致β - 内酰胺键断裂。在中性和弱碱性溶液中,主要降解产物是两种哌嗪 - 2,5 - 二酮和3 - 羟基 - 4 - 甲基 - 2(5H) - 噻吩酮,前者由反应a生成,而后者通过反应b和/或c的降解途径产生。