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首页> 外文期刊>Therapeutic Drug Monitoring >Possible Mechanisms for the Pharmacokinetic Interaction Between Phenytoin and Folinate in Rats.
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Possible Mechanisms for the Pharmacokinetic Interaction Between Phenytoin and Folinate in Rats.

机译:苯妥英钠与叶酸在大鼠体内的药代动力学相互作用的可能机制。

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The plasma concentration of phenytoin (PHT) is decreased by coadministration of folinate (leucovorin; LV), a folate (FA) analogue. The aim of this study was to examine the effect of LV on the pharmacokinetics of PHT in rats in vivo and to investigate the mechanism of the interaction. LV (50 mg/kg) was administered orally to rats concomitantly given intravenous PHT (50 mg/kg) to evaluate the effect of LV on the pharmacokinetics of PHT. The effect of LV on the plasma protein binding of PHT was investigated by using plasma from rats that had received oral LV. We also examined the effects of LV on the uptake of PHT into isolated rat hepatocytes and on the metabolism of PHT in isolated rat hepatocytes and rat hepatic microsomes. LV significantly increased the systemic clearance (2-fold) and liver-to-blood partition coefficient (1.24-fold) of PHT. However, it did not affect the plasma protein binding or hepatic uptake of PHT. LV increased the metabolism of PHT in isolated rat hepatocytes, with a significant 1.41-fold increase in the maximum rate of metabolism and a decrease in the Michaelis-Menten constant. On the other hand, 5-methyltetrahydrofolate (5-MTHF), a primary metabolite of LV and FA, significantly increased p-hydroxylation of PHT in rat hepatic microsomes, whereas LV and FA themselves had no effect. In conclusion, these results suggest that, in rats, LV, an FA analogue, decreases the plasma concentration of PHT by increasing the hepatic metabolism of PHT, and the increase in the PHT metabolism is, at least in part, attributable to 5-MTHF.
机译:叶酸(FA)类似物叶酸(亚叶酸钙; LV)的共同给药降低了苯妥英钠(PHT)的血浆浓度。这项研究的目的是检查LV对大鼠体内PHT药代动力学的影响,并研究其相互作用的机制。 LV(50 mg / kg)口服给予大鼠静脉给予PHT(50 mg / kg),以评估LV对PHT药代动力学的影响。通过使用接受口服LV的大鼠的血浆,研究了LV对PHT血浆蛋白结合的影响。我们还检查了LV对离体大鼠肝细胞摄取PHT以及对离体大鼠肝细胞和大鼠肝微粒体中PHT代谢的影响。 LV显着增加了PHT的全身清除率(2倍)和肝血分配系数(1.24倍)。但是,它不影响血浆蛋白结合或肝对PHT的吸收。 LV增加离体大鼠肝细胞中PHT的代谢,最大代谢率显着提高1.41倍,Michaelis-Menten常数降低。另一方面,LV和FA的主要代谢物5-甲基四氢叶酸(5-MTHF)显着增加了大鼠肝微粒体中PHT的p-羟基化,而LV和FA本身没有作用。总之,这些结果表明,在大鼠中,LV(FA类似物)通过增加PHT的肝代谢而降低PHT的血浆浓度,并且PHT代谢的增加至少部分归因于5-MTHF。 。

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