首页> 美国卫生研究院文献>ACS Chemical Neuroscience >Reversible Dimers of the Atypical Antipsychotic QuetiapineInhibit P-Glycoprotein-Mediated Efflux in Vitro with IncreasedBinding Affinity and in Situ at the Blood-Brain Barrier
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Reversible Dimers of the Atypical Antipsychotic QuetiapineInhibit P-Glycoprotein-Mediated Efflux in Vitro with IncreasedBinding Affinity and in Situ at the Blood-Brain Barrier

机译:非典型抗精神病药物喹硫平的可逆二聚体抑制P-糖蛋白介导的外排增加亲和力和血脑屏障原位结合

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摘要

The multidrug resistance transporter P-glycoprotein (P-gp) is highly expressed in the capillary endothelial cells of the blood-brain barrier (BBB) where it functions to limit the brain penetration of many drugs, including antipsychotic agents used to treat schizophrenia. Therefore, in an effort to inhibit the transporter, we designed dimers of the antipsychotic drug and P-gp substrate quetiapine (QT), linked by variable length tethers. In P-gp overexpressing cells and in human brain capillary endothelial hCMEC/D3 cells, the dimer with the shortest tether length (QT2C2) (>1) was the most potent inhibitor showing >80-fold better inhibition of P-gp-mediated transport than monomeric QT. The dimers, which are linked via ester moieties, are designed to revert to the therapeutic monomer once inside the target cells. We demonstrated that the addition of two sterically blocking methyl groups to the linker (QT2C2Me2, >8) increased the half-life of the molecule in plasma 10-fold as compared to the dimer lacking methyl groups (QT2C2, >1), while retaining inhibitory potency for P-gp transport and sensitivity to cellular esterases. Experiments with purified P-gpdemonstrated that QT2C2 (>1) andQT2C2Me2 (>8) interactedwith both the H- and R-binding sites of the transporter with bindingaffinities 20- to 30-fold higher than that of monomeric QT. Usingisolated rat brain capillaries, QT2C2Me2 (>8) was a more potent inhibitor of P-gp transportthan QT. Lastly, we showed that QT2C2Me2 (>8) increased the accumulation of the P-gp substrateverapamil in rat brain in situ three times more than QT. Together,these results indicate that the QT dimer QT2C2Me2 (>8) strongly inhibited P-gp transportactivity in human brain capillary endothelial cells, in rat braincapillaries, and at the BBB in an animal model.
机译:多药抗性转运蛋白P-糖蛋白(P-gp)在血脑屏障(BBB)的毛细血管内皮细胞中高度表达,在这里它的作用是限制许多药物的脑部渗透,包括用于治疗精神分裂症的抗精神病药。因此,为了抑制转运蛋白,我们设计了抗精神病药和P-gp底物喹硫平(QT)的二聚体,并通过可变长度的系链连接。在过表达P-gp的细胞和人脑毛细血管内皮hCMEC / D3细胞中,具有最短系链长度(QT2C2)(> 1 )的二聚体是最有效的抑制剂,其抑制作用提高了80倍以上P-gp介导的转运高于单体QT。通过酯部分连接的二聚体被设计成一旦进入靶细胞内就还原为治疗性单体。我们证明,向连接子(QT2C2Me2,> 8 )添加两个空间封闭的甲基,与缺乏甲基的二聚体(QT2C2, > 1 ),同时保留P-gp转运的抑制力和对细胞酯酶的敏感性。纯化P-gp的实验证明了QT2C2(> 1 )和QT2C2Me2(> 8 )已互动转运蛋白的H和R结合位点均具有结合亲和力比单体QT高20至30倍。使用分离的大鼠脑毛细血管QT2C2Me2(> 8 )是P-gp转运的更有效抑制剂比QT最后,我们表明QT2C 2 Me 2 (> 8 )增加了P-gp底物的积累维拉帕米在大鼠大脑原位比QT高三倍。一起,这些结果表明QT二聚体QT 2 C 2 Me 2 (> 8 )强烈抑制P-gp转运大鼠脑毛细血管内皮细胞的活性毛细血管,以及动物模型中的血脑屏障。

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