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通过原位小鼠脑灌注研究非肽类δ激动剂与P-糖蛋白的相互作用:液相色谱-质谱分析及内标策略

Interaction of nonpeptidic delta agonists with P-glycoprotein by in situ mouse brain perfusion: liquid chromatography-mass spectrometry analysis and internal standard strategy.

作者信息

Dagenais Claude, Ducharme Julie, Pollack Gary M

机构信息

Division of Drug Delivery and Disposition, School of Pharmacy, University of North Carolina at Chapel Hill, 27599-7360, USA.

出版信息

J Pharm Sci. 2002 Jan;91(1):244-52. doi: 10.1002/jps.1175.

Abstract

Many opioids are substrates of the efflux transporter P-glycoprotein (P-gp) in the blood-brain barrier (BBB). In situ brain perfusion in wild-type and mdr 1a(-/-) P-gp-deficient mice was utilized to investigate potential P-gp-mediated transport of novel nonpeptidic delta agonists (AR-M delta compounds). Because radioactive compounds were not available for this series, liquid chromatography-mass spectrometric detection (LC-MS) was the assay methodology of choice. Verapamil in the perfusion buffer (0.5 microM) served as a positive control for P-gp-mediated efflux and as an experimental internal standard for P-gp modulation by AR-M delta compounds. LC-MS provided excellent assay sensitivity with no significant interferences. In P-gp-competent mice, the brain extraction of AR-M delta compounds ranged from 1.1 to 96%. The ratio of initial brain uptake clearances (Cl(up)) in P-gp-deficient and wild-type mice (P-gp effect) ranged from 0.96 to 4.91. Some compounds increased the Cl(up) of verapamil in P-gp-competent mice, consistent with P-gp inhibition. These results demonstrate that LC-MS is an appropriate assay methodology for mouse brain perfusion samples, that AR-M delta compounds may interact with P-gp in the BBB, and that the internal strategy can provide useful information concerning P-gp modulation by compounds of interest.

摘要

许多阿片类药物是血脑屏障(BBB)中流出转运体P-糖蛋白(P-gp)的底物。利用野生型和mdr 1a(-/-)P-gp缺陷小鼠的原位脑灌注来研究新型非肽类δ激动剂(AR-Mδ化合物)潜在的P-gp介导转运。由于该系列没有放射性化合物,液相色谱-质谱检测(LC-MS)是首选的检测方法。灌注缓冲液中的维拉帕米(0.5 microM)作为P-gp介导流出的阳性对照以及AR-Mδ化合物对P-gp调节的实验内标。LC-MS提供了出色的检测灵敏度且无明显干扰。在具有P-gp功能的小鼠中,AR-Mδ化合物的脑摄取率在1.1%至96%之间。P-gp缺陷小鼠与野生型小鼠的初始脑摄取清除率(Cl(up))之比(P-gp效应)在0.96至4.91之间。一些化合物增加了具有P-gp功能小鼠中维拉帕米的Cl(up),这与P-gp抑制一致。这些结果表明,LC-MS是用于小鼠脑灌注样品的合适检测方法,AR-Mδ化合物可能在血脑屏障中与P-gp相互作用,并且该内部策略可以提供有关感兴趣化合物对P-gp调节的有用信息。

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