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Effect of clopidogrel on the hydroxylation and sulfoxidation of omeprazole: A single dose study in healthy human volunteers

机译:氯吡格雷对奥美拉唑羟基化和磺化氧化的影响:健康人类志愿者的单剂量研究

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摘要

Based upon the known potential interaction between omeprazole (OMP) and clopidogrel (CLOP), the current study was designed to evaluate the effect of CLOP on disposition of OMP and its two major metabolites, 5-hydroxyomeprazole (5-OH-OMP) and omeprazole sulfone (OMP-S) in healthy clinical subjects. A randomized, open label, 2-period, crossover study was designed. Twelve volunteers were selected, of whom eight were extensive metabolizers (EM) of CYP2C19 and 4 were poor metabolizers (PM). They received single dose of OMP either alone or in combination with CLOP (single dose) and samples were collected periodically to calculate various pharmacokinetic parameters. Changes in most of the pharmacokinetic parameters of OMP, 5-OH-OMP and OMP-S were insignificant (P ˃ 0.05) both in EM and PM except for the maximum concentration (Cmax) of 5-OH-OMP and OMP-S in EM. The OMP Cmax and AUC0-∞ was increased both in EM and PM after concomitant administration of OMP with CLOP. The 5-OH-OMP Cmax was decreased in both EM and PM, demonstrating that CLOP inhibits hydroxylation of OMP. The OMP-S Cmax and AUC0-∞ were increased both in EM and PM showing that CLOP may induce sulfoxidation of OMP. It was concluded that CLOP may inhibit hydroxylation of OMP to a greater extent in EM than in PM, leading to higher OMP Cmax and AUC0-∞. Furthermore, the sulfoxidation of OMP may also be induced by CLOP. So, it is suggested that both these drugs should be carefully prescribed together to avoid any harm to the patients. (Application number13/EC/Pharm. Ref number 12/Pharm).
机译:基于已知的奥美拉唑(OMP)和氯吡格雷(CLOP)之间潜在的相互作用,本研究旨在评估CLOP对OMP及其两种主要代谢物5-羟基奥美拉唑(5-OH-OMP)和奥美拉唑的处置的影响健康临床受试者中的砜(OMP-S)。设计了一项随机,开放标签,两期,交叉研究。选择了十二个志愿者,其中八个是CYP2C19的广泛代谢者(EM),另外四个是弱代谢者(PM)。他们单独或与CLOP(单剂量)联合接受单剂量的OMP,并定期收集样品以计算各种药代动力学参数。 EM和PM的大多数OMP,5-OH-OMP和OMP-S药代动力学参数的变化均无统计学意义(P˃0.05),但5-OH-OMP和OMP-S的最大浓度(Cmax)除外。 EM。伴有CLOP的OMP给药后,EM和PM中OMP Cmax和AUC0-∞均升高。 5-OH-OMP Cmax在EM和PM中均降低,表明CLOP抑制OMP的羟基化。 EM和PM中OMP-S Cmax和AUC0-∞均增加,表明CLOP可能诱导OMP的硫氧化。结论是,CLOP可能在EM中比在PM中更大程度地抑制OMP的羟基化,从而导致更高的OMP Cmax和AUC0-∞。此外,CLOP也可以诱导OMP的硫氧化。因此,建议将这两种药物一起谨慎使用,以免对患者造成伤害。 (申请号13 / EC / Pharm。参考号12 / Pharm)。

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