Glube Natalie, Closs Ellen, Langguth Peter
Institute of Pharmacy, Johannes Gutenberg University, Staudinger Weg 5, D-55099, Mainz, Germany.
Mol Pharm. 2007 Jan-Feb;4(1):160-8. doi: 10.1021/mp060073a.
The proximal tubular reabsorption of carnitine in the human kidney is significant because more than 95% of the carnitine filtered in the kidney is reabsorbed by the proximal tubules therefore maintaining the homeostatic balance of carnitine in the body. Objectives of this study include the characterization of OCTN2 function in the Caki-1 cell line and the potential interactions of carnitine uptake with renally secreted drugs, including drugs of quaternary ammonium structure. Caki-1 cells were additionally characterized to be of proximal tubule nature, and an apical membrane expression pattern of OCTN2 in Caki-1 cells was discovered. Uptake studies with radiolabeled L-carnitine in Caki-1 cells revealed a Na+- and temperature-dependent carrier-mediated process (K(m) = 15.90 microM) which was unaffected by pH in a range from 6.5 to 8.5. All drugs tested were able to inhibit the carnitine uptake process to different degrees. The quaternary ammonium compounds ciclotropium bromide and ipratropium bromide were strong inhibitors with IC(50) values of 30 microM and 95 microM, respectively. The observed kinetics, immunohistolocalization, and inhibition studies indicate that the high-affinity uptake of carnitine in the Caki-1 cell line is most likely mediated by OCTN2. The interaction of drugs at the renal level with OCTN2 indicates a possible pathway for the final step of cationic secretion into the urine.
人体肾脏近端小管对肉碱的重吸收意义重大,因为经肾脏滤过的肉碱中超过95%被近端小管重吸收,从而维持体内肉碱的稳态平衡。本研究的目的包括在Caki-1细胞系中表征OCTN2的功能,以及肉碱摄取与肾脏分泌药物(包括具有季铵结构的药物)之间的潜在相互作用。另外,已确定Caki-1细胞具有近端小管的特性,并且发现了OCTN2在Caki-1细胞中的顶膜表达模式。对Caki-1细胞中放射性标记的L-肉碱进行摄取研究,结果显示这是一个依赖于Na+和温度的载体介导过程(K(m)=15.90微摩尔),在pH值为6.5至8.5的范围内不受pH影响。所有测试药物均能不同程度地抑制肉碱摄取过程。季铵化合物溴环喷托酯和异丙托溴铵是强效抑制剂,IC(50)值分别为30微摩尔和95微摩尔。观察到的动力学、免疫组织定位和抑制研究表明,Caki-1细胞系中肉碱的高亲和力摄取很可能是由OCTN2介导的。药物在肾脏水平与OCTN2的相互作用表明,这可能是阳离子分泌进入尿液最后一步的一条途径。