Kiander Wilma, Sinokki Alli, Neuvonen Mikko, Kidron Heidi, Niemi Mikko
Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, FI-00014 Helsinki, Finland; Department of Clinical Pharmacology, Faculty of Medicine, University of Helsinki, FI-00014 Helsinki, Finland; Individualized Drug Therapy Research Program, Faculty of Medicine, University of Helsinki, FI-00014 Helsinki, Finland; Department of Clinical Pharmacology, HUS Diagnostic Center, Helsinki University Hospital, FI-00029 Helsinki, Finland.
Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, FI-00014 Helsinki, Finland.
Eur J Pharm Sci. 2025 Jun 1;209:107073. doi: 10.1016/j.ejps.2025.107073. Epub 2025 Mar 17.
Uptake into hepatocytes by the organic anion transporting polypeptides (OATP) 1B1, 1B3, and 2B1 can form a rate-determining step in drug clearance. While several lipid-lowering statin drugs are substrates of the hepatic OATPs, the literature statin uptake profiles form a wide range with values obtained from different laboratories and systems. Therefore, this study aimed to characterize hepatic OATP-mediated transport of statins in a single-laboratory experimental setup, allowing comparison between the statins and OATPs. The uptake of atorvastatin, 3R,5S-fluvastatin, 3S,5R-fluvastatin, pravastatin, rosuvastatin, and simvastatin acid was assessed in human embryonic kidney 293 cells overexpressing OATP1B1, 1B3, or OATP2B1. All the three OATPs transported atorvastatin with K values 2.6 μM (1B1), 1.9 μM (1B3), and 1.1 μM (2B1). Also rosuvastatin was transported by all the OATPs: OATP1B1 (as previously reported from our lab) and 2B1 affinities were similar (13 μM) while OATP1B3 had a K of 40 μM. Although all OATPs also transported pravastatin, the uptake by OATP2B1 was not saturated at the studied concentration range, and affinity parameters could be determined only for OATP1B1 and 1B3 at K 37 μM and 28 µM, respectively. OATP2B1 was the high-affinity transporter of the fluvastatin enantiomers (K 0.57 μM for 3S,5R- and 2.5 μM for 3R,5S-fluvastatin) which were not taken up by OATP1B3. Importantly, active simvastatin acid uptake was observed only for OATP1B1 with a K value of 2.1 μM. Taken together, only OATP1B1 could transport all statins and, in general, the affinities of the hydrophobic statins (atorvastatin, fluvastatin, simvastatin acid) were higher compared to the hydrophilic statins (pravastatin, rosuvastatin). These differences between the OATPs and statins can help to explain differences in clinically observed statin gene-drug interactions and have utility in the pharmacokinetic modeling of statins.
有机阴离子转运多肽(OATP)1B1、1B3和2B1介导的药物进入肝细胞过程可能成为药物清除的限速步骤。虽然几种降血脂他汀类药物是肝脏OATP的底物,但文献报道的他汀类药物摄取情况差异很大,不同实验室和系统得到的值范围很广。因此,本研究旨在在单一实验室实验设置中表征肝脏OATP介导的他汀类药物转运,以便对他汀类药物和OATP进行比较。在过表达OATP1B1、1B3或OATP2B1的人胚肾293细胞中评估了阿托伐他汀、3R,5S-氟伐他汀、3S,5R-氟伐他汀、普伐他汀、瑞舒伐他汀和辛伐他汀酸的摄取情况。所有这三种OATP均转运阿托伐他汀,其K值分别为2.6 μM(1B1)、1.9 μM(1B3)和1.1 μM(2B1)。瑞舒伐他汀也被所有OATP转运:OATP1B1(如我们实验室先前报道)和2B1的亲和力相似(13 μM),而OATP1B3的K值为40 μM。虽然所有OATP也转运普伐他汀,但在研究的浓度范围内,OATP2B1的摄取未达到饱和,仅能确定OATP1B1和1B3的亲和力参数,其K值分别为37 μM和28 μM。OATP2B1是氟伐他汀对映体的高亲和力转运体(3S,5R-氟伐他汀的K值为0.57 μM,3R,5S-氟伐他汀的K值为2.5 μM),而OATP1B3不摄取氟伐他汀对映体。重要的是,仅观察到OATP1B1对活性辛伐他汀酸有摄取,其K值为2.1 μM。总体而言,只有OATP1B1能够转运所有他汀类药物,一般来说,疏水性他汀类药物(阿托伐他汀、氟伐他汀、辛伐他汀酸)的亲和力高于亲水性他汀类药物(普伐他汀、瑞舒伐他汀)。OATP与他汀类药物之间的这些差异有助于解释临床上观察到的他汀类药物基因-药物相互作用的差异,并在他汀类药物的药代动力学建模中具有应用价值。