Drug Delivery and Disposition (S.F., Pa.A., Pi.A.), Laboratory of Cell Metabolism (A.B.S., M.B.), Clinical Pharmacology and Pharmacotherapy (K.A.), Department of Pharmaceutical and Pharmacological Sciences, and Department of Development and Regeneration (K.A.), KU Leuven, Leuven, Belgium; and Department of Hospital Pharmacy, Erasmus University Medical Centre, Rotterdam, The Netherlands (K.A.).
Drug Delivery and Disposition (S.F., Pa.A., Pi.A.), Laboratory of Cell Metabolism (A.B.S., M.B.), Clinical Pharmacology and Pharmacotherapy (K.A.), Department of Pharmaceutical and Pharmacological Sciences, and Department of Development and Regeneration (K.A.), KU Leuven, Leuven, Belgium; and Department of Hospital Pharmacy, Erasmus University Medical Centre, Rotterdam, The Netherlands (K.A.)
Drug Metab Dispos. 2024 Oct 16;52(11):1253-1261. doi: 10.1124/dmd.124.001766.
The organic cation transporter (OCT)-1 mediates hepatic uptake of cationic endogenous compounds and xenobiotics. To date, limited information exists on how Oct1/OCT1 functionally develops with age in rat and human livers and how this would affect the pharmacokinetics of OCT substrates in children or juvenile animals. The functional ontogeny of rOct/hOCT was profiled in suspended rat (2-57 days old) and human hepatocytes (pediatric liver tissue donors: age 2-12 months) by determining uptake clearance of 4-[4-(dimethylamino)styryl]-N-methylpyridinium iodide (ASP+) as a known rOct/hOCT probe substrate. mRNA expression was determined in rat liver tissue corresponding to rat ages used in the functional studies, while hOCT1 mRNA expressions were determined in the same hepatocyte batches as those used for uptake studies. Maturation of rOct/hOCT activity and expression were evaluated by comparing values obtained at the various ages to the adult values. Relative to adult values (at 8 weeks), ASP uptake clearance in suspended rat hepatocytes aged 0, 1, 2, 3, 4, 5, and 6 weeks reached 26%, 29%, 33%, 37%, 72%, 63%, and 71%, respectively. Hepatic Oct1 mRNA expression was consistent with Oct activity (correlation coefficient of 0.92). In human hepatocytes, OCT1 activity was age dependent and also correlated with mRNA levels (correlation coefficient of 0.88). These data show that Oct1/OCT1 activities and expression mature gradually in rat/human liver, thereby mirroring the expression pattern of organic anion transporting polypeptide in rat. These high-resolution transporter ontogeny profiles will allow for more accurate prediction of the pharmacokinetics of OCT1/Oct1 substrates in pediatric populations and juvenile animals. SIGNIFICANCE STATEMENT: Organic cation transporter-1 (OCT1) represents a major drug uptake transporter in human liver. This study provides high-resolution data regarding the age-dependent function of OCT1 in the liver, based on in vitro experiments with rat and human hepatocytes obtained from donors between birth and adulthood. These ontogeny profiles will inform improved age-specific physiologically based pharmacokinetic models for OCT1 drug substrates in neonates, infants, children, and adults.
有机阳离子转运体 (OCT)-1 介导内源性阳离子化合物和外源性化合物在肝脏中的摄取。迄今为止,关于 Oct1/OCT1 在大鼠和人肝脏中的功能如何随年龄增长而发育,以及这将如何影响儿童或幼年动物中 OCT 底物的药代动力学,相关信息十分有限。通过测定 4-[4-(二甲氨基)苯乙烯基]-N-甲基吡啶鎓碘化物 (ASP+) 的摄取清除率,作为已知的 rOct/hOCT 探针底物,来描绘 rOct/hOCT 的功能个体发生。在大鼠肝组织中测定与功能研究中使用的大鼠年龄相对应的 mRNA 表达,同时在与摄取研究中使用的相同肝细胞批次中测定 hOCT1 mRNA 表达。通过将在各个年龄获得的值与成人值进行比较,来评估 rOct/hOCT 活性和表达的成熟度。与成人值(8 周龄)相比,0、1、2、3、4、5 和 6 周龄悬浮大鼠肝细胞中 ASP 的摄取清除率分别达到 26%、29%、33%、37%、72%、63%和 71%。肝 Oct1 mRNA 表达与 Oct 活性一致(相关系数为 0.92)。在人肝细胞中,OCT1 活性与年龄有关,并且与 mRNA 水平相关(相关系数为 0.88)。这些数据表明,Oct1/OCT1 活性和表达在大鼠/人肝脏中逐渐成熟,从而反映了大鼠中有机阴离子转运多肽的表达模式。这些高分辨率转运体个体发生谱将允许更准确地预测儿科人群和幼年动物中 OCT1/Oct1 底物的药代动力学。意义声明:有机阳离子转运体-1 (OCT1) 是人类肝脏中主要的药物摄取转运体。本研究基于从出生到成年的供体获得的大鼠和人肝细胞的体外实验,提供了关于 OCT1 在肝脏中年龄依赖性功能的高分辨率数据。这些个体发生谱将为新生儿、婴儿、儿童和成人的 OCT1 药物底物提供更准确的特定年龄的基于生理学的药代动力学模型。