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人用 XBD173 和乙噻啡的药代动力学特征可区分其通过转位蛋白介导药效作用的潜力。

Human pharmacokinetics of XBD173 and etifoxine distinguish their potential for pharmacodynamic effects mediated by translocator protein.

机构信息

Department of Brain Sciences, Imperial College London, London.

Pharmidex Pharmaceutical Services, London, UK.

出版信息

Br J Clin Pharmacol. 2022 Sep;88(9):4230-4236. doi: 10.1111/bcp.15392. Epub 2022 May 20.

Abstract

XBD173 and etifoxine are translocator protein (TSPO) ligands that modulate inflammatory responses in preclinical models. Limited human pharmacokinetic data is available for either molecule, and the binding affinity of etifoxine for human TSPO is unknown. To allow for design of human challenge experiments, we derived pharmacokinetic data for orally administered etifoxine (50 mg 3 times daily) and XBD173 (90 mg once daily) and determined the binding affinity of etifoxine for TSPO. For XBD173, maximum plasma concentration and free fraction measurements predicted a maximal free concentration of 1.0 nM, which is similar to XBD173 binding affinity. For etifoxine, maximum plasma concentration and free fraction measurements predicted a maximal free concentration of 0.31 nM, substantially lower than the K for etifoxine in human brain derived here (7.8 μM, 95% CI 4.5-14.6 μM). We conclude that oral XBD173 dosing at 90 mg once daily will achieve pharmacologically relevant TSPO occupancy. However, the occupancy is too low for TSPO mediated effects after oral dosing of etifoxine at 50 mg 3 times daily.

摘要

XBD173 和依替福辛是转位蛋白(TSPO)配体,可调节临床前模型中的炎症反应。这两种分子的人体药代动力学数据有限,且依替福辛与人体 TSPO 的结合亲和力未知。为了设计人体挑战实验,我们推导出了口服依替福辛(50mg,每日 3 次)和 XBD173(90mg,每日 1 次)的药代动力学数据,并确定了依替福辛与 TSPO 的结合亲和力。对于 XBD173,最大血浆浓度和游离分数测量预测最大游离浓度为 1.0nM,与 XBD173 的结合亲和力相似。对于依替福辛,最大血浆浓度和游离分数测量预测最大游离浓度为 0.31nM,远低于这里从人脑中获得的依替福辛 K 值(7.8μM,95%CI 4.5-14.6μM)。我们得出结论,每天口服 XBD173 90mg 将达到具有治疗意义的 TSPO 占有率。然而,口服依替福辛 50mg,每日 3 次时,TSPO 介导的作用的占有率太低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/823d/9545781/e520d21fa97b/BCP-88-4230-g001.jpg

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