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手性与神经精神药物:安非他酮立体选择性处置及临床药代动力学的最新进展

Chirality and neuropsychiatric drugs: an update on stereoselective disposition and clinical pharmacokinetics of bupropion.

作者信息

Dash Ranjeet Prasad, Rais Rana, Srinivas Nuggehally R

机构信息

a Drug Metabolism and Pharmacokinetics, Johns Hopkins Drug Discovery Program, Johns Hopkins University , Baltimore , MD , USA.

b Department of Neurology , Johns Hopkins University , Baltimore , MD , USA , and.

出版信息

Xenobiotica. 2018 Sep;48(9):945-957. doi: 10.1080/00498254.2017.1376765. Epub 2017 Oct 13.

Abstract

1. Bupropion, an antidepressant drug has been approved as a racemate containing equal amounts of R- and S-enantiomers. Recently, the chirality of bupropion has received significant attention in the delineation of stereoselective pharmacokinetic (PK) and disposition data. Although the non-stereoselective metabolism of bupropion was well established, the emerging data suggest that bupropion exhibits complex stereoselective metabolism, leading to the formation of various stereoisomeric metabolites. Along with the chiral PKs of bupropion, hydroxybupropion, threohydrobupropion and erythrohydrobupropion, the metabolism data also provided insights into the roles of both CYP2B6 and CYP2C19 enzymes in the stereoselective disposition. Furthermore, the metabolism studies also suggested specific involvement of CYP2B6 pathway in the stereoselective hydroxylation of bupropion to R,R-hydroxybupropion, which was considered as a better marker for CYP2B6 activity. 2. Other significant learnings were: (1) understanding the in vivo CYP2D6 inhibitory potential of bupropion with respect to the chirality of parent drug and the metabolites; (2) the potential involvement of bupropion and metabolites towards significant down regulation of CYP2D6 mRNA; (3) significant in vivo CYP2D6 inhibitory activity (86%) exhibited by R,R-hydroxybupropion and threohydrobupropion. 3. The newly published data on chiral PKs and disposition of bupropion and its metabolites can be used to gauge the drug-drug interaction potential when bupropion is combined in clinical therapy. Moreover, such data would be useful to understand the consequences (if any), due to the combination of bupropion with other drugs both from a safety and efficacy perspective because of the prevalence of polypharmacy situations in many therapeutic areas including CNS indications.

摘要
  1. 安非他酮是一种抗抑郁药物,已被批准为含有等量R-和S-对映体的外消旋体。最近,安非他酮的手性在立体选择性药代动力学(PK)和处置数据的描述中受到了极大关注。尽管安非他酮的非立体选择性代谢已得到充分证实,但新出现的数据表明,安非他酮表现出复杂的立体选择性代谢,导致形成各种立体异构代谢物。除了安非他酮、羟基安非他酮、苏式羟基安非他酮和赤式羟基安非他酮的手性PK外,代谢数据还为CYP2B6和CYP2C19酶在立体选择性处置中的作用提供了见解。此外,代谢研究还表明,CYP2B6途径在安非他酮立体选择性羟基化生成R,R-羟基安非他酮中具有特定作用,R,R-羟基安非他酮被认为是CYP2B6活性的更好标志物。2. 其他重要发现包括:(1)了解安非他酮对母体药物和代谢物手性的体内CYP2D6抑制潜力;(2)安非他酮及其代谢物对CYP2D6 mRNA显著下调的潜在影响;(3)R,R-羟基安非他酮和苏式羟基安非他酮表现出显著的体内CYP2D6抑制活性(86%)。3. 新发表的关于安非他酮及其代谢物的手性PK和处置的数据可用于评估安非他酮在临床治疗中联合使用时的药物相互作用潜力。此外,由于包括中枢神经系统适应症在内的许多治疗领域中多药合用情况普遍,从安全性和有效性角度来看,这些数据对于理解安非他酮与其他药物联合使用的后果(如果有的话)将是有用的。

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