首页> 外文期刊>Molecular pharmaceutics >P-glycoprotein, breast cancer resistance protein, organic anion transporter 3, and transporting peptide 1a4 during blood-brain barrier maturation: Involvement of Wnt/β-catenin and endothelin-1 signaling
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P-glycoprotein, breast cancer resistance protein, organic anion transporter 3, and transporting peptide 1a4 during blood-brain barrier maturation: Involvement of Wnt/β-catenin and endothelin-1 signaling

机译:P-糖蛋白,乳腺癌抗性蛋白,有机阴离子转运蛋白3和血脑屏障成熟过程中的转运肽1a4:Wnt /β-catenin和内皮素1信号的参与

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Our current knowledge about drug transporters in the maturational brain is very limited. In this study, we provide a comprehensive overview of the expression and activity profile of P-glycoprotein (P-gp), Breast Cancer Resistance Protein (bcrp), Organic Anion Transporter 3 (oat3), and Transporting Peptide 1a4 (oatp1a4) transporters during blood-brain barrier (BBB) maturation. Gene and protein expressions of the analyzed transporters increase as the brain matures, with no variation in their activity for P-gp and bcrp, while the transport activity of oat3 and oatp1a4 increases during brain maturation from preterm up to adulthood. For the first time, we illustrate a downregulation of nuclear β-catenin expression in brain capillaries when bcrp, P-gp, oat3, and oatp1a4 transporters are at their highest expression levels. In vivo activation of β-catenin in rat brains, by intracerebroventricular (ICV) injection of a GSK-3 inhibitor, enhances the activity of P-gp, bcrp, oat3, and oatp1a4. Interestingly, in an in vitro BBB model consisting of a coculture of primary endothelial brain cells with astrocytes or in vivo, activation of β-catenin enhances the mRNA expression of ET-1. Interestingly, blocking the ETA receptor for endothelin-1 in vivo by ICV injection of a ETA antagonist decreases transporter activity mediated by the activation of β-catenin. These findings shed light on the role of an interaction between β-catenin and endothelin-1 signaling in the regulation of these transporters at the BBB.
机译:我们目前关于成熟大脑中药物转运蛋白的知识非常有限。在这项研究中,我们提供了P-糖蛋白(P-gp),乳腺癌抗性蛋白(bcrp),有机阴离子转运蛋白3(oat3)和转运肽1a4(oatp1a4)转运蛋白的表达和活性概况的全面概述。血脑屏障(BBB)成熟。分析的转运蛋白的基因和蛋白质表达随着大脑的成熟而增加,它们对P-gp和bcrp的活性没有变化,而oat3和oatp1a4的转运活性在从早产到成年的大脑成熟过程中增加。首次,我们说明了当bcrp,P-gp,oat3和oatp1a4转运蛋白处于最高表达水平时,脑毛细血管中核β-连环蛋白表达的下调。通过脑室内(ICV)注射GSK-3抑制剂在大鼠脑中体内激活β-catenin,可增强P-gp,bcrp,oat3和oatp1a4的活性。有趣的是,在由原代内皮细胞与星形胶质细胞共培养或在体外组成的体外BBB模型中,β-catenin的激活增强了ET-1的mRNA表达。有趣的是,通过ICV注射ETA拮抗剂在体内阻断内皮素-1的ETA受体降低了由β-连环蛋白的活化介导的转运蛋白活性。这些发现揭示了β-连环蛋白和内皮素-1信号传导之间的相互作用在BBB转运蛋白调控中的作用。

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