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阿片类药物与外排转运体。第4部分:N-取代基对去甲羟吗啡酮类似物P-糖蛋白底物活性的影响。

Opioids and efflux transporters. Part 4: influence of N-substitution on P-glycoprotein substrate activity of noroxymorphone analogues.

作者信息

Metcalf Matthew D, Rosicky Andrew D, Hassan Hazem E, Eddington Natalie D, Coop Andrew, Cunningham Christopher W, Mercer Susan L

机构信息

Department of Pharmaceutical Sciences, MCPHS University, 19 Foster Street, Worcester, MA 01608, USA.

Department of Pharmaceutical Sciences, Concordia University Wisconsin School of Pharmacy, 12800 North Lake Shore Drive, Mequon, WI 53097, USA.

出版信息

Bioorg Med Chem Lett. 2014 Aug 1;24(15):3592-5. doi: 10.1016/j.bmcl.2014.05.033. Epub 2014 May 22.

Abstract

The efflux transporter protein P-glycoprotein (P-gp) is capable of affecting the central distribution of diverse neurotherapeutics, including opioid analgesics, through their active removal from the brain. P-gp located at the blood brain barrier has been implicated in the development of tolerance to opioids and demonstrated to be up-regulated in rats tolerant to morphine and oxycodone. We have previously examined the influence of hydrogen-bonding oxo-substitutents on the P-gp-mediated efflux of 4,5-epoxymorphinan analgesics, as well as that of N-substituted analogues of meperidine. Structure-activity relationships (SAR) governing N-substituent effects on opioid efficacy is well-established, however the influence of such structural modifications on P-gp-mediated efflux is unknown. Here, we present SAR describing P-gp recognition of a short series of N-modified 4,5-epoxymorphinans. Oxymorphone, naloxone, naltrexone, and nalmexone all failed to demonstrate P-gp substrate activity, indicating these opioid scaffolds contain structural features that preclude recognition by the transporter. These results are examined using mathematical molecular modeling and discussed in comparison to other opioid scaffolds bearing similar N-substituents.

摘要

外排转运蛋白P-糖蛋白(P-gp)能够通过将多种神经治疗药物(包括阿片类镇痛药)从大脑中主动清除,从而影响它们在中枢的分布。位于血脑屏障的P-gp与阿片类药物耐受性的产生有关,并且在对吗啡和羟考酮产生耐受性的大鼠中被证明上调。我们之前研究了氢键氧取代基对4,5-环氧吗啡喃类镇痛药以及哌替啶N-取代类似物的P-gp介导外排的影响。关于N-取代基对阿片类药物疗效影响的构效关系(SAR)已经确立,但这种结构修饰对P-gp介导外排的影响尚不清楚。在此,我们展示了描述P-gp对一系列短链N-修饰4,5-环氧吗啡喃识别的SAR。羟吗啡酮、纳洛酮、纳曲酮和纳美酮均未表现出P-gp底物活性,表明这些阿片类药物骨架包含阻止转运蛋白识别的结构特征。使用数学分子模型对这些结果进行了研究,并与带有类似N-取代基的其他阿片类药物骨架进行了比较讨论。

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