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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Pharmacokinetics of Bupropion and Its Pharmacologically Active Metabolites in Pregnancy
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Pharmacokinetics of Bupropion and Its Pharmacologically Active Metabolites in Pregnancy

机译:孕期安非他酮及其药理活性代谢物的药代动力学

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Bupropion sustained release is used to promote smoking cessation in males and nonpregnant females. However, its efficacy as a smoking cessation aid during pregnancy is not reported. The pregnancy-associated changes in maternal physiology may alter the pharmacokinetics and pharmacodynamics of bupropion and consequently its efficacy in pregnant smokers. Therefore, the aims of this study were to determine the steady-state pharmacokinetics of bupropion during pregnancy and the effect of functional genetic variants of CYP2B6 and CYP2C19 on bupropion pharmacokinetics in pregnant women. Plasma and urine concentrations of bupropion and its metabolites hydroxybupropion (OHBUP), threohydrobupropion, and erythrohydrobupropion were determined by liquid chromatography-mass spectrometry. Subjects were genotyped for five nonsynonymous single-nucleotide polymorphisms that result in seven CYP2B6 alleles, namely (star)2, (star)3, (star)4, (star)5, (star)6, (star)7, and (star)9, and for CYP2C19 variants (star)2, (star)3, and (star)17. The present study reports that the isoform-specific effect of pregnancy on bupropion-metabolizing enzymes along with the increase of renal elimination of the drug could collectively result in a slight decrease in exposure to bupropion in pregnancy. In contrast, pregnancy-induced increase in CYP2B6-catalyzed bupropion hydroxylation did not impact the plasma levels of OHBUP, probably due to a higher rate of OHBUP glucuronidation, and renal elimination associated with pregnancy. Therefore, exposure to OHBUP, a pharmacologically active metabolite of the bupropion, appears to be similar to that of the nonpregnant state. The predicted metabolic phenotypes of CYP2B6(star)6 and variant alleles of CYP2C19 in pregnancy are similar to those in the nonpregnant state.
机译:安非他酮缓释用于促进男性和未怀孕女性的戒烟。然而,尚未报道其在怀孕期间作为戒烟辅助药的功效。与孕妇相关的孕产妇生理变化可能会改变安非他酮的药代动力学和药效学,从而改变其在孕妇吸烟者中的功效。因此,本研究的目的是确定妊娠期安非他酮的稳态药代动力学以及CYP2B6和CYP2C19的功能遗传变异对孕妇安非他酮药代动力学的影响。通过液相色谱-质谱法测定安非他酮及其代谢产物羟基安非他酮(OHBUP),苏氢安非他酮和赤氢安非他酮的血浆和尿液浓度。对受试者的五种非同义单核苷酸多态性进行基因分型,这些多态性导致七个CYP2B6等位基因,即(star)2,(star)3,(star)4,(star)5,(star)6,(star)7和( star)9和CYP2C19变体(star)2,(star)3和(star)17。本研究报告指出,妊娠对安非他酮代谢酶的同工型特异性作用以及药物对肾脏的消除作用可能共同导致妊娠中安非他酮的暴露量略有减少。相反,妊娠引起的CYP2B6催化的安非他酮羟基化增加不会影响血浆中的OHBUP水平,这可能是由于OHBUP葡萄糖醛酸化率更高,以及与妊娠相关的肾脏消除。因此,安非他酮的药理活性代谢产物OHBUP的暴露似乎与未怀孕状态相似。 CYP2B6(star)6的预测代谢表型和CYP2C19的变异等位基因与怀孕状态相似。

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