O'Callaghan C H
Antimicrob Agents Chemother. 1978 Apr;13(4):628-33. doi: 10.1128/AAC.13.4.628.
The chromogenic cephalosporin nitrocefin (87/312) demonstrates rapid and visible instability to serum from many species. This phenomenon was distinct from serum binding, being significantly slower. Destruction of another cephalosporin, 10485, by serum appeared to account for some anomalous results during investigation into its human pharmacokinetics. Many cephalosporins of very different structures also showed serum instability, unrelated to their degrees of serum binding as measured by plate assay. Extrapolation could not be made from one species to another with regard to either binding or instability. Small changes in the chemical structures of the 3- and 7-substituents of the cephalosporins made profound changes in their susceptibility to serum attack. The decomposition is pH dependent, occurring more slowly at acid pH, and is due to a high-molecular-weight component of serum that resists boiling for several minutes. Isoelectric focusing of serum from several animal species gave various species-specific bands that decomposed nitrocefin. The inactivation of nitrocefin was not entirely parallel with that of 10485 and was inhibited by it. All other beta-lactam compounds tested also inhibited the reaction, much greater concentrations usually being necessary when the inhibitor was stable to serum. The complex that causes breakdown of the beta-lactam compounds is not necessarily the same as the one causing serum binding. It is postulated that serum may affect most other beta-lactam antibiotics in a similar way, although in most cases, this only occurs to a very slight extent.
显色头孢菌素硝噻吩(87/312)对许多物种的血清表现出快速且明显的不稳定性。这种现象与血清结合不同,其速度明显较慢。在对另一种头孢菌素10485进行人体药代动力学研究期间,血清对它的破坏似乎导致了一些异常结果。许多结构差异很大的头孢菌素也表现出血清不稳定性,这与通过平板试验测定的它们的血清结合程度无关。关于结合或不稳定性,无法从一个物种推断到另一个物种。头孢菌素3位和7位取代基化学结构的微小变化会使其对血清攻击的敏感性发生深刻变化。分解过程依赖于pH值,在酸性pH条件下发生得较慢,这是由于血清中一种抗数分钟煮沸的高分子量成分所致。对几种动物物种的血清进行等电聚焦得到了分解硝噻吩的各种物种特异性条带。硝噻吩的失活与10485的失活并不完全平行,且会被10485抑制。所测试的所有其他β-内酰胺化合物也抑制该反应,当抑制剂对血清稳定时,通常需要更高的浓度。导致β-内酰胺化合物分解的复合物不一定与导致血清结合的复合物相同。据推测,血清可能以类似方式影响大多数其他β-内酰胺抗生素,尽管在大多数情况下,这种影响程度非常轻微。