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Montelukast Disposition: No Indication of Transporter-Mediated Uptake in OATP2B1 and OATP1B1 Expressing HEK293 Cells

机译:孟鲁司特性:没有迹象表明转运蛋白介导的OATP2B1和OATP1B1表达HEK293细胞的摄取。

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摘要

Clinical studies with montelukast show variability in effect and polymorphic OATP2B1-dependent absorption has previously been implicated as a possible cause. This claim has been challenged with conflicting data and here we used OATP2B1-transfected HEK293 cells to clarify the mechanisms involved. For montelukast, no significant difference in cell uptake between HEK-OATP2B1 and empty vector cell lines was observed at pH 6.5 or pH 7.4, and no concentration-dependent uptake was detected. Montelukast is a carboxylic acid, a relatively potent inhibitor of OATP1B1, OATP1B3, and OATP2B1, and has previously been postulated to be actively transported into human hepatocytes. Using OATP1B1-transfected HEK293 cells and primary human hepatocytes in the presence of OATP inhibitors we demonstrate for the first time that active OATP-dependent transport is unlikely to play a significant role in the human disposition of montelukast.
机译:孟鲁司特的临床研究表明,效果存在差异,以前已证实多态性OATP2B1依赖性吸收是可能的原因。该说法受到了冲突数据的挑战,在这里我们使用了OATP2B1转染的HEK293细胞来阐明所涉及的机制。对于孟鲁司特,在pH 6.5或pH 7.4时,未观察到HEK-OATP2B1与空载体细胞系之间细胞摄取的显着差异,并且未检测到浓度依赖性摄取。孟鲁司特是一种羧酸,是OATP1B1,OATP1B3和OATP2B1的一种相对有效的抑制剂,以前被假定可以主动转运到人肝细胞中。在存在OATP抑制剂的情况下,使用OATP1B1转染的HEK293细胞和原代人肝细胞,我们首次证明了依赖OATP的主动转运不太可能在孟鲁司特的人类处置中发挥重要作用。

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