Fabre H, Eddine N H, Berge G
J Pharm Sci. 1984 May;73(5):611-8. doi: 10.1002/jps.2600730508.
The degradation kinetics of a 3- acetoxymethylcephalosporin , cefotaxime sodium salt, in aqueous solution investigated by HPLC under different conditions (pH, ionic strength, temperature) and using different buffers. The scheme of degradation involves a cleavage of the beta-lactam nucleus and the deacetylation of the side chain. In highly acidic medium, the deacetylated derivative is easily converted to the lactone. The degradation rate constants were calculated at three pH values (1.9, 4.0, and 9.0) by measuring the residual cephalosporin and the main decomposition products. The degradation pathway is both supported by the results of a primary salt effect and by the agreement between the theoretical pH-rate profile and the experimental values. In the pH range from 3.0 to 7.0, the main process is a slow water-catalyzed or spontaneous cleavage of the beta-lactam nucleus with intramolecular participation of the side chain amido fraction in the 7-position. In alkaline or strongly acidic medium, the hydrolysis is a base- or acid-catalyzed reaction. Of the buffer systems investigated, carbonate buffer (pH 8.5) and borate buffers (pH 9.5 and 10.0) are found to increase the degradation rates, while acetate buffer decreases the degradation rates. The apparent activation energies determined at different pH values are compatible with a solvolysis mechanism and similar to those previously given in the literature for other cephalosporins. Cefotaxime in aqueous solution is slightly less stable than the main cephalosporin derivatives, despite its high resistance to the beta-lactamases and its remarkable biological activity.
通过高效液相色谱法(HPLC)在不同条件(pH值、离子强度、温度)下并使用不同缓冲液,研究了3-乙酰氧甲基头孢菌素(头孢噻肟钠盐)在水溶液中的降解动力学。降解过程包括β-内酰胺环的裂解和侧链的脱乙酰化。在高酸性介质中,脱乙酰化衍生物很容易转化为内酯。通过测量残留的头孢菌素和主要分解产物,计算了三个pH值(1.9、4.0和9.0)下的降解速率常数。一级盐效应的结果以及理论pH-速率曲线与实验值之间的一致性均支持了降解途径。在pH值为3.0至7.0的范围内,主要过程是β-内酰胺环的缓慢水催化或自发裂解,7位侧链酰胺部分参与分子内反应。在碱性或强酸性介质中,水解是碱催化或酸催化反应。在所研究的缓冲体系中,发现碳酸盐缓冲液(pH 8.5)和硼酸盐缓冲液(pH 9.5和10.0)会增加降解速率,而醋酸盐缓冲液会降低降解速率。在不同pH值下测定的表观活化能与溶剂解机理相符,并且与文献中先前给出的其他头孢菌素的表观活化能相似。尽管头孢噻肟对β-内酰胺酶具有高抗性且具有显著的生物活性,但其在水溶液中的稳定性略低于主要的头孢菌素衍生物。