Imatinib Uptake into Cells is Not Mediated by Organic Cation Transporters OCT1, OCT2, or OCT3, But is Influenced by Extracellular pH.

Jaurès Blanc Mettral, Nicolas Faller, Sandra Cruchon, Loïc Sottas, Thierry Buclin, Laurent Schild, Eva Choong, Aimable Nahimana, Laurent A Decosterd
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引用次数: 9

Abstract

Background: Cancer cells undergo genetic and environmental changes that can alter cellular disposition of drugs, notably by alterations of transmembrane drug transporters expression. Whether the influx organic cation transporter 1 (OCT1) encoded by the gene SLC221A1 is implicated in the cellular uptake of imatinib is still controversial. Besides, imatinib ionization state may be modulated by the hypoxic acidic surrounding extracellular microenvironment.

Objective: To determine the functional contribution of OCTs and extracellular pH on imatinib cellular disposition.

Methods: We measured imatinib uptake in two different models of selective OCTs drug transporter expression (transfected Xenopus laevis oocytes and OCT-expressing HEK293 human cells), incubated at pH 7.4 and 6, using specific mass spectrometry analysis.

Results: Imatinib cellular uptake occurred independently of OCT1- OCT2- or OCT3-mediated drug transport at pH 7.4. Uptake of the OCTs substrate tetraethylammonium in oocytes remained intact at pH 6, while the accumulation of imatinib in oocytes was 10-fold lower than at pH 7.4, irrespectively of OCTs expressions. In OCT1- and OCT2-HEK cells at pH 6, imatinib accumulation was reduced by 2- 3-fold regardless of OCTs expressions. Since 99.5% of imatinib at pH6 is under the cationic form, the reduced cellular accumulation of imatinib at such pH may be explained by the lower amount of uncharged imatinib remaining for passive diffusion across cellular membrane.

Conclusion: Imatinib is not a substrate of OCTs 1-3 while the environmental pH modulates cellular disposition of imatinib. The observation that a slightly acidic extracellular pH influences imatinib cellular accumulation is important, considering the low extracellular pH reported in the hematopoietic leukemia/ cancer cell microenvironment.

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伊马替尼进入细胞不是由有机阳离子转运体OCT1、OCT2或OCT3介导的,而是受到细胞外pH值的影响。
背景:癌细胞经历遗传和环境变化,可以改变药物的细胞配置,特别是通过改变跨膜药物转运蛋白的表达。SLC221A1基因编码的内流有机阳离子转运体1 (OCT1)是否与伊马替尼的细胞摄取有关仍存在争议。此外,伊马替尼的电离状态可能受细胞外微环境的缺氧酸性调节。目的:探讨OCTs和细胞外pH值对伊马替尼细胞配置的作用。方法:在pH 7.4和6条件下培养的两种不同的oct药物转运体表达模型(转染的非洲爪蟾卵母细胞和表达oct的HEK293人细胞)中,我们使用特异性质谱分析测量了伊马替尼的摄取。结果:在pH 7.4时,伊马替尼的细胞摄取独立于OCT1- OCT2-或oct3介导的药物转运。在pH值为6时,卵母细胞对OCTs底物四乙基铵的摄取保持不变,而在pH值为7.4时,卵母细胞中伊马替尼的积累比pH值为7.4时低10倍,与OCTs的表达无关。在pH为6的OCT1-和OCT2-HEK细胞中,无论OCTs的表达如何,伊马替尼的积累减少了2- 3倍。由于在pH6下99.5%的伊马替尼是阳离子形式,在这种pH下,伊马替尼的细胞积累减少可能是由于不带电的伊马替尼在细胞膜上被动扩散的数量减少。结论:伊马替尼不是OCTs 1-3的底物,而环境pH调节伊马替尼的细胞配置。考虑到在造血白血病/癌细胞微环境中报道的低细胞外pH值,微酸性细胞外pH值影响伊马替尼细胞积累的观察结果很重要。
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来源期刊
Drug metabolism letters
Drug metabolism letters Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
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期刊介绍: Drug Metabolism Letters publishes letters and research articles on major advances in all areas of drug metabolism and disposition. The emphasis is on publishing quality papers very rapidly by taking full advantage of the Internet technology both for the submission and review of manuscripts. The journal covers the following areas: In vitro systems including CYP-450; enzyme induction and inhibition; drug-drug interactions and enzyme kinetics; pharmacokinetics, toxicokinetics, species scaling and extrapolations; P-glycoprotein and transport carriers; target organ toxicity and interindividual variability; drug metabolism and disposition studies; extrahepatic metabolism; phase I and phase II metabolism; recent developments for the identification of drug metabolites.
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