首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Evaluation of the permeation characteristics of a model opioid peptide, H-Tyr-D-Ala-Gly-Phe-D-Leu-OH (DADLE), and its cyclic prodrugs across the blood-brain barrier using an in situ perfused rat brain model.
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Evaluation of the permeation characteristics of a model opioid peptide, H-Tyr-D-Ala-Gly-Phe-D-Leu-OH (DADLE), and its cyclic prodrugs across the blood-brain barrier using an in situ perfused rat brain model.

机译:使用原位灌注大鼠脑模型评估模型阿片样肽H-Tyr-D-Ala-Gly-Phe-D-Leu-OH(DADLE)及其循环前药在血脑屏障中的渗透特性。

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The permeation characteristics of a model opioid peptide, H-Tyr-D-Ala-Gly-Phe-D-Leu-OH (DADLE), and its cyclic prodrugs [acyloxyalkoxy-based cyclic prodrug of DADLE (AOA-DADLE), coumarinic acid-based cyclic prodrug of DADLE (CA-DALE), and oxymethyl-modified coumarinic acid-based cyclic prodrug of DADLE (OMCA-DADLE)] across the blood-brain barrier (BBB) were determined using an in situ perfused rat brain model. The rat brains were perfused with Krebs-bicarbonate buffer containing test compounds in the absence or presence of a specific P-glycoprotein inhibitor (GF-120918). Brain samples were collected after perfusion and processed by a capillary depletion method. After liquid phase extraction with acetonitrile, samples were analyzed using high-performance liquid chromatography with tandem mass spectrometric detection. Linear uptake kinetics of DADLE and its cyclic prodrugs was observed within the range of 60 to 240 s of perfusion. The apparent permeability coefficient (P(app)) of DADLE across the BBB was very low (<10(-7) cm/s), probably due to its unfavorable physicochemical properties (e.g., charge, hydrophilicity, and high hydrogen-bonding potential). All three cyclic prodrugs, however, also exhibited low membrane permeation (P(app) <10(-7) cm/s) in spite of their more favorable physicochemical properties (e.g., no charge, high hydrophobicity, and low hydrogen-bonding potential). Inclusion of GF-120918 (10 microM) in the perfusates fully inhibited the P-gp activity in the BBB and dramatically increased the P(app) values of AOA-DADLE, CA-DADLE, and OMCA-DADLE by approximately 50-, 460-, and 170-fold, respectively. In contrast, GF-120918 had no effect on the P(app) value of DADLE. In addition, the observed bioconversions of the prodrugs to DADLE in the rat brains after 240-s perfusion were very low (5.1% from AOA-DADLE, 0.6% from CA-DADLE, and 0.2% from OMCA-DADLE), which was consistent with the in vitro bioconversion rates determined previously in rat brain homogenates.
机译:阿片样肽H-Tyr-D-Ala-Gly-Phe-D-Leu-OH(DADLE)及其环状前药[基于酰氧基烷氧基的DADLE(AOA-DADLE),香豆酸)的渗透特性使用原位灌流大鼠脑模型确定了跨血脑屏障(BBB)的DADLE(CA-DALE)的基于DADLE的环状前药(CA-DALE)和基于DADLE的氧甲基修饰的基于香豆酸的环状前药(OMCA-DADLE)]。在不存在或存在特定P-糖蛋白抑制剂(GF-120918)的情况下,向大鼠大脑灌注含有测试化合物的Krebs-碳酸氢盐缓冲液。灌注后收集脑样本,并通过毛细管消耗法进行处理。用乙腈进行液相萃取后,使用高效液相色谱-串联质谱检测对样品进行分析。在灌注60至240 s的范围内观察到DADLE及其环状前药的线性摄取动力学。 DADLE在BBB上的表观渗透系数(P(app))非常低(<10(-7)cm / s),可能是由于其不利的理化特性(例如,电荷,亲水性和高氢键势) )。然而,尽管这三种环状前药的理化性质更佳(例如,不带电荷,高疏水性和低氢键势),但它们的膜渗透性也较低(P(app)<10(-7)cm / s)。 )。在灌流液中加入GF-120918(10 microM)可以完全抑制BBB中的P-gp活性,并显着增加AOA-DADLE,CA-DADLE和OMCA-DADLE的P(app)值约50、460 -和170倍。相反,GF-120918对DADLE的P(app)值没有影响。此外,在240秒的灌注后,观察到的前药在大鼠脑中的生物转化为DADLE的转化率非常低(AOA-DADLE为5.1%,CA-DADLE为0.6%,OMCA-DADLE为0.2%),这是一致的之前在大鼠脑匀浆中测定的体外生物转化率。

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