Department of Discovery DMPK, AstraZeneca R&D Charnwood, Loughborough, United Kingdom.
Drug Metab Dispos. 2011 Dec;39(12):2361-9. doi: 10.1124/dmd.111.041814. Epub 2011 Sep 22.
Although the dog is frequently used in pharmacological, pharmacokinetic, and drug safety studies, little is known about canine drug transporters. Dog organic anion-transporting polypeptide (Oatp1b4) has recently been cloned (Comp Biochem Physiol C Toxicol Pharmacol 151:393-399, 2010), but the contribution of Oatp1b4 to hepatic uptake has yet to be clarified. This study compares the transport characteristics of dog Oatp1b4 with those of human OATP1B1/1B3 and demonstrates the importance of Oatp1b4 in the uptake of anionic compounds in dog hepatocytes. Oatp1b4 is the predominant Oatp in dog liver with expression levels double and 30 times those of Oatp2b1 and Oatp1a2, respectively. Uptake of a range of typical OATP substrates by Oatp1b4-expressing HEK293 cells was compared with that in fresh dog hepatocytes. All compounds tested were transported by Oatp1b4 and uptake intrinsic clearance (CL(int, uptake)) in dog hepatocytes in sodium-free buffer was correlated significantly with CL(int, uptake) in Oatp1b4-expressing cells. Dog in vivo clearance for five substrates was predicted more accurately from CL(int, uptake) than from metabolic intrinsic clearance (CL(int, met)), indicating that uptake governs the overall in vivo hepatic clearance of these anionic compounds in dog. The substrate specificities of dog Oatp1b4 appear to be similar to those of human OATP1B1/OATP1B3, whereas the relative uptake clearance of substrates for Oatp1b4 correlate better with OATP1B3 than with the more abundant hepatic analog OATP1B1.
尽管狗经常被用于药理学、药代动力学和药物安全性研究,但对于犬类药物转运体知之甚少。最近已克隆出犬有机阴离子转运多肽(Oatp1b4)(Comp Biochem Physiol C Toxicol Pharmacol 151:393-399, 2010),但 Oatp1b4 对肝摄取的贡献尚未阐明。本研究比较了犬 Oatp1b4 与人类 OATP1B1/1B3 的转运特性,并证明了 Oatp1b4 在犬肝细胞摄取阴离子化合物中的重要性。Oatp1b4 是犬肝中主要的 Oatp,其表达水平分别是 Oatp2b1 和 Oatp1a2 的两倍和 30 倍。用表达 Oatp1b4 的 HEK293 细胞比较了一系列典型 OATP 底物的摄取,与新鲜犬肝细胞的摄取进行了比较。所有测试的化合物均由 Oatp1b4 转运,在无钠缓冲液中犬肝细胞的摄取内在清除率(CL(int, uptake))与表达 Oatp1b4 的细胞中的 CL(int, uptake)显著相关。与代谢内在清除率(CL(int, met))相比,从 CL(int, uptake) 更能准确预测五种底物在犬体内的清除率,表明摄取控制了这些阴离子化合物在犬体内整体的体内肝清除率。犬 Oatp1b4 的底物特异性似乎与人类 OATP1B1/OATP1B3 相似,而 Oatp1b4 对底物的摄取清除率与 OATP1B3 的相关性优于更丰富的肝类似物 OATP1B1。