Lind R C, Gandolfi A J, Hall P M
Department of Anesthesiology, Arizona Health Sciences Center, University of Arizona, Tucson 85724.
J Appl Toxicol. 1990 Jun;10(3):161-5. doi: 10.1002/jat.2550100304.
Isoniazid (INH) is a selective inducer of cytochrome P-450 isozymes that are involved in the biotransformation of organohalogen anesthetics. It has been used to produce a rat model of halothane-associated hepatotoxicity that was linked to enhanced oxidative biotransformation of the anesthetic. Guinea pigs were pretreated with INH in order to potentiate halothane-induced hepatic necrosis and to study the oxidative pathway as a hepatotoxic mechanism in this species. The animals received either 12.5, 25.0 or 50.0 mg kg-1 INH i.p. for 7 days. Following halothane exposure, there were dose-dependent increases in plasma levels of the oxidative halothane metabolite, trifluoroacetic acid. These increases were associated with increases in 48 h plasma alanine aminotransferase (ALT) levels. When combined with halothane exposure, the two higher doses of INH killed the animals before planned termination. These deaths were not attributable to hepatic failure. Dividing the 25 mg kg-1 INH dose into twice daily injections of 12.5 mg kg-1 reduced deaths. INH pretreatment control animals exhibited occasional non-dose-dependent increases in ALT as well as the occurrence of fatty vacuolization of hepatocytes at the highest dose. Even though INH pretreatment enhanced oxidative halothane biotransformation and subsequent hepatotoxicity, sensitivity of guinea pigs to the deleterious actions of INH would contraindicate its use as a cytochrome P-450 induction agent.
异烟肼(INH)是参与有机卤素麻醉剂生物转化的细胞色素P-450同工酶的选择性诱导剂。它已被用于建立一种与氟烷相关的肝毒性大鼠模型,这种肝毒性与麻醉剂氧化生物转化增强有关。豚鼠经异烟肼预处理,以增强氟烷诱导的肝坏死,并研究氧化途径作为该物种肝毒性机制。动物腹腔注射12.5、25.0或50.0mg/kg异烟肼,持续7天。氟烷暴露后,氧化氟烷代谢产物三氟乙酸的血浆水平呈剂量依赖性升高。这些升高与48小时血浆丙氨酸转氨酶(ALT)水平升高有关。当与氟烷暴露联合使用时,较高剂量的两种异烟肼在计划终止前导致动物死亡。这些死亡并非归因于肝衰竭。将25mg/kg异烟肼剂量分为每日两次注射,每次12.5mg/kg,可减少死亡。异烟肼预处理的对照动物偶尔出现非剂量依赖性的ALT升高,以及在最高剂量时出现肝细胞脂肪空泡化。尽管异烟肼预处理增强了氟烷的氧化生物转化及随后的肝毒性,但豚鼠对异烟肼有害作用的敏感性使其不能用作细胞色素P-450诱导剂。