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首页> 外文期刊>Journal of Medicinal Chemistry >Identification of novel substrates and structure-activity relationship of cellular uptake mediated by human organic cation transporters 1 and 2
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Identification of novel substrates and structure-activity relationship of cellular uptake mediated by human organic cation transporters 1 and 2

机译:新型底物的鉴定和人类有机阳离子转运蛋白1和2介导的细胞摄取的结构-活性关系

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Recently the clinical importance of human organic cation transporters 1 (hOCT1/SLC22A1) and 2 (hOCT2/SLC22A2) in drug disposition, for example, clearance, toxicity, and drug-drug interactions, have been highlighted [Annu. Rev. Pharmacol. Toxicol. 2012, 52, 249-273; Nat. Rev. Drug Discovery 2010, 9 (3), 215-236]. Consequently, there is an extensive need for experimental assessment of structure-transport relationships as well as tools to predict drug uptake by these transporters in ADMET (absorption, distribution, metabolism, excretion, toxicity) investigations. In the present study, we developed a robust assay for screening unlabeled compound uptake by hOCT1 and hOCT2 using transfected HEK293 cells. For the first time, an extensive data set comprising uptake of 354 compounds is presented. As expected, there was a large overlap in substrate specificity between the two organic cation transporters. However, several compounds selectively taken up by either hOCT1 or hOCT2 were identified. In particular, a chemical series of phenylthiophenecarboxamide ureas was identified as selective hOCT1 substrates. Moreover, the drivers for transport differed: molecular volume was the most important determinant of hOCT1 substrates, whereas H-bonding parameters like polar surface area (PSA) dominated for hOCT2.
机译:最近,人们已经强调了人类有机阳离子转运蛋白1(hOCT1 / SLC22A1)和2(hOCT2 / SLC22A2)在药物处置中的临床重要性,例如清除率,毒性和药物-药物相互作用[Annu。 Pharmacol版。毒药。 2012,52,249-273;纳特Rev. Drug Discovery 2010,9(3),215-236]。因此,迫切需要对结构-转运关系进行实验评估,以及在ADMET(吸收,分布,代谢,排泄,毒性)研究中预测这些转运蛋白吸收药物的工具。在本研究中,我们开发了一种强大的测定方法,用于使用转染的HEK293细胞筛选hOCT1和hOCT2的未标记化合物摄取。首次提出了包含354种化合物吸收量的广泛数据集。如预期的那样,两种有机阳离子转运蛋白之间的底物特异性存在很大的重叠。但是,鉴定了几种被hOCT1或hOCT2选择性吸收的化合物。特别地,化学系列的苯基噻吩羧酰胺脲被鉴定为选择性hOCT1底物。此外,运输的驱动因素也不同:分子体积是hOCT1底物的最重要决定因素,而H键参数如极性表面积(PSA)则是hOCT2的主要因素。

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