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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Transepithelial transport of organic anions across the choroid plexus: possible involvement of organic anion transporter and multidrug resistance-associated protein.
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Transepithelial transport of organic anions across the choroid plexus: possible involvement of organic anion transporter and multidrug resistance-associated protein.

机译:有机阴离子跨脉络膜上皮的跨上皮转运:有机阴离子转运蛋白和多药耐药相关蛋白可能参与其中。

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摘要

Transport characteristics of 17beta-estradiol 17beta-D-glucuronide (E217betaG), a dual substrate of the transporters for cellular uptake (organic anion-transporting polypeptide 1 or oatp1) and cellular excretion (multidrug resistance-associated protein 1or MRP1), in the rat choroid plexus were studied in vivo and in vitro. The uptake of E217betaG into isolated choroid plexus was mediated by an energy-dependent system with a Km of 3.4 microM. Together with the previous finding that oatp1 is localized on the apical membrane of choroid plexus, these results suggest that oatp1 is responsible for the uptake of this ligand. After intracerebroventricular administration, elimination of E217betaG from cerebrospinal fluid was probenecid sensitive and much more rapid than that of inulin; less than 2% of the administered E217betaG and 40 to 50% of inulin remained in the cerebrospinal fluid 20 min after intracerebroventricular administration. In addition, the amount of E217betaG associated with choroid plexus at 20 min was negligible, suggesting the presence of an efficient excretion system on the basolateral membrane of choroid plexus. Expression of MRP1 was detected in choroid plexus. Semiquantitative reverse transcription-polymerase chain reaction and Western blot analyses indicated that the expression level of MRP1 in choroid plexus is about four or five times higher than that in the lung, one of the tissues exhibiting high expression of MRP1. Together with the in vivo vectorial transport of E217betaG, these results can be accounted for by assuming that there is basolateral localization of MRP1 in choroid plexus. Combined, oatp1 and MRP1 may synergistically mediate the efficient transcellular transport of E217betaG across choroid plexus.
机译:大鼠中细胞摄取(有机阴离子转运多肽1或oatp1)和细胞排泄物(多药耐药相关蛋白1或MRP1)的双重转运蛋白17beta-雌二醇17beta-D-葡萄糖醛酸(E217betaG)的转运特性。体内和体外研究脉络膜神经丛。 E217betaG摄取到孤立的脉络丛中是由Km为3.4 microM的能量依赖系统介导的。连同先前的发现oatp1位于脉络丛的顶膜上,这些结果表明oatp1负责该配体的摄取。脑室内给药后,从脑脊液中清除E217betaG对丙磺舒敏感,并且比菊粉更快。脑室内注射后20分钟内,不到2%的E217betaG和40至50%的菊粉残留在脑脊液中。此外,在20分钟时与脉络丛相关的E217betaG的量可以忽略不计,表明脉络丛的基底外侧膜上存在有效的排泄系统。在脉络丛中检测到MRP1的表达。半定量逆转录-聚合酶链反应和蛋白质印迹分析表明,脉络丛中MRP1的表达水平是肺中高表达的四到五倍,而肺是其中一种高表达MRP1的组织。连同E217betaG的体内载体运输,可以通过假设脉络丛中存在MRP1的基底外侧定位来解释这些结果。结合在一起,oatp1和MRP1可以协同介导E217betaG跨脉络丛的有效跨细胞转运。

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