Role of CYP2E1 and saturation kinetics in the bloactivation of thioacetamide: Effects of diet restriction and phenobarbital

被引:24
作者
Chilakapati, Jaya
Korrapati, Midhun C.
Shankar, Kartik
Hill, Ronald A.
Warbritton, Alan
Latendresse, John R.
Mehendale, Harihara M.
机构
[1] NE Louisiana Univ, Dept Toxicol, Coll Pharm, Monroe, LA 71209 USA
[2] NE Louisiana Univ, Div Basic Pharmaceut Sci RAH, Coll Pharm, Monroe, LA 71209 USA
[3] Arkansas Childrens Nutr Ctr, Little Rock, AR USA
[4] Natl Ctr Toxicol Res, Pathol Associates Int, Jefferson, AR 72079 USA
关键词
cyp2e1; knockouts; diet restriction; phenobarbital; liver injury; thioacetamide;
D O I
10.1016/j.taap.2006.11.036
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Thioacetamide (TA) undergoes saturation toxicokinetics in ad libitum (AL) fed rats. Diet restriction (DR) protects rats from lethal dose of TA despite increased bioactivation-mediated liver injury via CYP2E1 induction. While a low dose (50 mg TA/kg) produces 6-fold higher initial injury, a 12-fold higher dose produces delayed and mere 2.5-fold higher injury. The primary objective was to determine if this less-than-expected increase in injury is due to saturation toxicokinetics. Rats on AL and DR for 21 days received either 50 or 600 mg TA/kg i.p. T-1/2 and AUCs for TA and TA-S-oxide were consistent with saturable kinetics. Covalent binding of C-14-TA-derived-radiolabel to liver macromolecules after low dose was 2-fold higher in DR than AL rats. However, following lethal dose, no differences were found between AL and DR. This lack of dose-dependent response appears to be due to saturation of bioactivation at the higher dose. The second objective was to investigate the effect of phenobarbital pretreatment (PB) on TA-initiated injury following a sub-lethal dose (500 mg/kg). PB induced CYP2B1/2 similar to 350-fold, but did not increase covalent binding of C-14-TA, TA-induced liver injury and mortality, suggesting that CYP2B1/2 has no major role in TA bioactivation. The third objective was to investigate the role of CYP2E1 using cyp2e1 knockout mice (KO). Injury was assessed over time (0-48 h) in wild type (WT) and KO mice after LD100 dose (500 mg/kg) in WT. While WT mice exhibited robust injury which progressed to death, KO mice exhibited neither initiation nor progression of injury. These findings confirm that CYP2E1 is responsible for TA bioactivation. (c) 2006 Elsevier Inc. All rights reserved.
引用
收藏
页码:72 / 84
页数:13
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