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In vitro and in vivo neuromuscular effects of atracurium and rocuronium in rats treated with carbamazepine for seven days

机译:阿曲库铵和罗库溴铵对卡马西平治疗7天大鼠的体外和体内神经肌肉作用

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摘要

BACKGROUND AND OBJECTIVES: This experimental study investigated the in vitro and in vivo neuromuscular blockade of rocuronium and atracurium in rats treated with carbamazepine and determined the concentration of cytochrome P450 and b5 reductase in hepatic microsomes. METHODS: Rats were treated with carbamazepine (CBZ) - 40 mg.kg-1 by gavage and sacrificed on the eighth day under anesthesia with urethane. In vitro and in vivo preparations followed the techniques of Bulbring and Leeuwin and Wolters, respectively. Concentrations and doses of the neuromuscular blockers used in in vitro and in vivo preparations were, respectively, 20 µg.mL-1 and 0.5 mg.kg-1 for atracurium (ATC); and 4 µg.kg-1 and 0.6 mg.kg-1 for rocuronium (ROC). Each protocol had an n = 5 and the response was observed for 60 minutes. The effects of ATC and ROC were evaluated in the preparations of rats treated with carbamazepine (CBZt) and compared to those of non-treated rats (CBZst). The concentration of cytochrome P450 and b5 reductase were determined in hepatic chromosomes of rats treated with carbamazepine (CBZt) and non-treated rats (CBZst). RESULTS: Carbamazepine did not change the amplitude of neuromuscular response; differences in the neuromuscular blockade produced by atracurium in CBZ1 preparations were not observed, in vitro or in vivo, when compared with CBZst; the neuromuscular blockade produced by rocuronium in CBZt preparations was potentiated in vitro. Carbamazepine did not change the concentrations of cytochrome P450 and b5. CONCLUSIONS: Seven-day treatment with carbamazepine did not change the neuromuscular blockade produce by atracurium, but altered the in vitro effects of rocuronium. The duration of the treatment was not enough to cause enzymatic induction and decrease the sensitivity to rocuronium.
机译:背景与目的:本实验研究了卡马西平治疗大鼠体内罗库溴铵和曲库溴铵的体外和体内神经肌肉阻滞作用,并测定了肝微粒体中细胞色素P450和b5还原酶的浓度。方法:用管饲法用卡马西平(CBZ)-40 mg.kg-1处理大鼠,并在第8天用氨基甲酸乙酯麻醉处死。体外和体内制备分别遵循Bulbring和Leeuwin和Wolters的技术。体外和体内制剂中使用的神经肌肉阻滞剂的浓度和剂量分别为阿曲库铵(ATC)为20 µg.mL-1和0.5 mg.kg-1。罗库溴铵(ROC)的浓度为4 µg.kg-1和0.6 mg.kg-1。每个协议的n = 5,并在60分钟内观察到响应。在用卡马西平(CBZt)治疗的大鼠的制剂中评估了ATC和ROC的作用,并与未治疗的大鼠(CBZst)进行了比较。测定了卡马西平(CBZt)处理的大鼠和未处理的大鼠(CBZst)的肝染色体中细胞色素P450和b5还原酶的浓度。结果:卡马西平未改变神经肌肉反应的幅度。与CBZst相比,在体外或体内均未观察到阿曲库铵在CBZ1制剂中产生的神经肌肉阻滞差异;罗库溴铵在CBZt制剂中产生的神经肌肉阻滞作用在体外得到增强。卡马西平不会改变细胞色素P450和b5的浓度。结论:卡马西平治疗7天并未改变阿曲库铵对神经肌肉的阻滞作用,但改变了罗库溴铵的体外作用。治疗的持续时间不足以引起酶促诱导并降低对罗库溴铵的敏感性。

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