Schnell R C, Means J R, Roberts S A, Pence D H
Environ Health Perspect. 1979 Feb;28:273-9. doi: 10.1289/ehp.7928273.
Cadmium is a potent inhibitor of hepatic microsomal drug biotransformation in the rat. Male rats receiving a single intraperitoneal dose of cadmium exhibit significant decreases in hepatic microsomal metabolism of a variety of substrates. The threshold cadmium dose is 0.84 mg Cd/kg, and the effect lasts at least 28 days. Mechanistically, the inhibitory effect results from decreased cytochrome P-450 content since cadmium does not alter NADPH cytochrome c reductase activity. This effect is also observed following acute oral administration of cadmium in doses greater than 80 mg Cd/kg but is not observed following chronic administration of the metal via drinking water in concentrations of 5-200 ppm for periods ranging from 2 to 50 weeks. A tolerance to the inhibitory cadmium effect is observed if male rats are pretreated with subthreshold doses of the metal prior to the challenge cadmium dose. The degree of tolerance can be overcome by increasing the challenge dose of cadmium. Characterization of the tolerance phenomenon in terms of onset, duration, and intensity reveals a good correlation with the kinetics of metallothionein production, suggesting that the underlying basis for the tolerance phenomenon is likely the induction of metallothionein. A sex-related difference in the inhibitory effect of cadmium was observed. Cadmium did not inhibit the metabolism of hexobarbital or ethylmorphine in female rats but did inhibit that of aniline or zoxazolamine. Cadmium did not lower cytochrome P-450 content in female rats.
镉是大鼠肝脏微粒体药物生物转化的有效抑制剂。接受单次腹腔注射镉的雄性大鼠,其肝脏微粒体对多种底物的代谢显著降低。镉的阈剂量为0.84毫克镉/千克,且该效应至少持续28天。从机制上讲,抑制作用是由于细胞色素P - 450含量降低所致,因为镉不会改变NADPH细胞色素c还原酶的活性。在急性口服剂量大于80毫克镉/千克的镉后也观察到这种效应,但在以5 - 200 ppm的浓度通过饮用水长期(2至50周)给予该金属时未观察到这种效应。如果雄性大鼠在接受挑战剂量的镉之前先用阈下剂量的金属进行预处理,则会观察到对镉抑制作用的耐受性。通过增加镉的挑战剂量可以克服耐受程度。从发作、持续时间和强度方面对耐受现象进行表征,发现与金属硫蛋白产生的动力学有良好的相关性,这表明耐受现象的潜在基础可能是金属硫蛋白的诱导。观察到镉的抑制作用存在性别差异。镉不会抑制雌性大鼠中己巴比妥或乙基吗啡的代谢,但会抑制苯胺或唑沙仑的代谢。镉不会降低雌性大鼠中的细胞色素P - 450含量。