首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Pharmacokinetic parameters of chlorzoxazone and its main metabolite, 6-hydroxychlorzoxazone, after intravenous and oral administration of chlorzoxazone to liver cirrhotic rats with diabetes mellitus.
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Pharmacokinetic parameters of chlorzoxazone and its main metabolite, 6-hydroxychlorzoxazone, after intravenous and oral administration of chlorzoxazone to liver cirrhotic rats with diabetes mellitus.

机译:氯唑沙宗对肝硬化糖尿病大鼠的静脉和口服给药后,氯唑沙宗及其主要代谢物6-羟基氯唑沙宗的药代动力学参数。

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Protein expression of the hepatic CYP2E1 has been reported to be increased in diabetic rats. This enzyme is the primary metabolizer of chlorzoxazone (CZX) to 6-hydroxychlorzoxazone (OH-CZX). Although patients with liver cirrhosis have a higher prevalence of diabetes mellitus, there have been no reported studies on the protein expression of CYP2E1 in rats induced to have liver cirrhosis and diabetes mellitus by injection of N-dimethylnitrosamine followed by streptozotocin [liver cirrhosis with diabetes mellitus (LCD) rats]. Thus, in the present study, the pharmacokinetics of CZX and OH-CZX were evaluated in LCD rats. Compared with control rats, LCD rats had significantly decreased (by 62%) total liver protein and significantly increased (by 124%) protein expression of CYP2E1, but the intrinsic clearance (Cl(int); formation of OH-CZX per milligram protein) was comparable in both groups of rats. As a result, the relative Cl(int) was also comparable for the two groups. Thus, OH-CZX formation in LCD and control rats was expected to be similar. As expected, after i.v. (20 mg/kg) and p.o. (50 mg/kg) administration of CZX, the area under the curve (AUC) of OH-CZX was comparable in control and LCD rats (i.v., 571 +/- 85.8 and 578 +/- 413 microg x min/ml, respectively; p.o., 1540 +/- 338 and 2170 +/- 1070 microg x min/ml, respectively). In LCD rats, the AUC(OH-CZX)/AUC(CZX) ratio was similar to the value in control rats after i.v. and p.o. administration. These results indicate that OH-CZX can be used as a chemical probe to assess the activity of CYP2E1 in LCD rats.
机译:据报道在糖尿病大鼠中肝CYP2E1的蛋白表达增加。该酶是氯唑沙宗(CZX)转化为6-羟基氯唑沙宗(OH-CZX)的主要代谢物。尽管肝硬化患者的糖尿病患病率较高,但尚无关于通过注射N-二甲基亚硝胺和链脲佐菌素诱发肝硬化和糖尿病大鼠的CYP2E1蛋白表达的研究。 (LCD)大鼠]。因此,在本研究中,在LCD大鼠中评估了CZX和OH-CZX的药代动力学。与对照组大鼠相比,LCD大鼠的CYP2E1总肝蛋白显着降低(62%),蛋白表达显着提高(124%),但固有清除率(Cl(int);每毫克蛋白OH-CZX的形成)在两组大鼠中具有可比性。结果,两组的相对Cl(int)也相当。因此,预期LCD和对照大鼠中OH-CZX的形成是相似的。不出所料(20 mg / kg)和p.o. (50 mg / kg)的CZX给药,OH-CZX的曲线下面积(AUC)在对照组和LCD大鼠中相当(iv,571 +/- 85.8和578 +/- 413 microg x min / ml ; po,分别为1540 +/- 338和2170 +/- 1070 microg x min / ml。在LCD大鼠中,静脉输注后AUC(OH-CZX)/ AUC(CZX)的比率与对照组大鼠相似。和p.o.行政。这些结果表明,OH-CZX可用作评估LCD大鼠中CYP2E1活性的化学探针。

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