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地芬尼多在血脑屏障的主动摄取及其与羟考酮在体外和体内的相互作用。

Diphenhydramine active uptake at the blood-brain barrier and its interaction with oxycodone in vitro and in vivo.

机构信息

Department of Pharmaceutical Biosciences, Uppsala University, SE-75124 Uppsala, Sweden.

出版信息

J Pharm Sci. 2011 Sep;100(9):3912-23. doi: 10.1002/jps.22567. Epub 2011 Apr 6.

Abstract

Diphenhydramine (DPHM) and oxycodone are weak bases that are able to form cations. Both drugs show active uptake at the blood-brain barrier (BBB). There is thus a possibility for a pharmacokinetic interaction between them by competition for the same uptake transport system. The experiments of the present study were designed to study the transport of DPHM across the BBB and its interaction with oxycodone in vitro and in vivo. In vitro, the interaction between the drugs was studied using conditionally immortalized rat brain capillary endothelial cells (TR-BBB13 cells). The in vivo relevance of the in vitro findings was studied in rats using brain and blood microdialysis. DPHM was actively transported across the BBB in vitro (TR-BBB13 cells). Oxycodone competitively inhibited DPHM uptake with a K(i) value of 106 μM. DPHM also competitively inhibited oxycodone uptake with a K(i) value of 34.7 μM. In rats, DPHM showed fivefold higher unbound concentration in brain interstitial fluid (ISF) than in blood, confirming a net active uptake. There was no significant interaction between DPHM and oxycodone in vivo. This accords with the results of the in vitro experiments because the unbound plasma concentrations that could be attained in vivo, without causing adverse effects, were far below the K(i) values.

摘要

苯海拉明(DPHM)和羟考酮是弱碱性药物,能够形成阳离子。这两种药物都能在血脑屏障(BBB)处主动摄取。因此,它们之间有可能通过竞争相同的摄取转运系统而产生药代动力学相互作用。本研究的实验旨在研究 DPHM 在体外和体内穿过血脑屏障的转运及其与羟考酮的相互作用。在体外,使用条件永生化大鼠脑毛细血管内皮细胞(TR-BBB13 细胞)研究了药物之间的相互作用。在大鼠中,使用脑和血液微透析研究了体外发现的体内相关性。DPHM 在体外(TR-BBB13 细胞)能主动穿过血脑屏障转运。羟考酮竞争性抑制 DPHM 摄取,K(i)值为 106 μM。DPHM 也竞争性抑制羟考酮摄取,K(i)值为 34.7 μM。在大鼠中,DPHM 在脑间质液(ISF)中的未结合浓度比血液中的高五倍,证实了净主动摄取。DPHM 和羟考酮在体内没有明显的相互作用。这与体外实验的结果一致,因为在体内不会引起不良反应的情况下,能够达到的未结合血浆浓度远低于 K(i)值。

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