Tanaka C, Kawai R, Rowland M
Drug Metabolism and Pharmacokinetics, Novartis Pharmaceuticals Corporation, East Hanover, New Jersey, USA.
Drug Metab Dispos. 2000 May;28(5):582-9.
Cyclosporin A (CyA) tissue distribution kinetics was extensively studied after single 1.2-, 6-, and 30-mg/kg CyA doses (via 2-min i.v. infusion) to rats. Drug concentrations in blood and various tissues were measured using a specific radioimmunoassay. Based on total blood concentration data alone, CyA systemic pharmacokinetics appeared essentially linear. However, after taking the saturable, nonlinear blood cell binding into account, multiple nonlinear factors were identified. Intrinsic clearance at 30 mg/kg was about half the value at the two lower doses. Tissue distribution was also dose-dependent, with evidence of saturable binding in many tissues. In general, blood binding saturation (dissociation constant K(D) = 0. 18 microg/ml) occurred at a lower dose (concentration) than saturation of tissue binding (K(D), 0.005-0.77 microg/g), such that the volume of distribution at steady state first increased as the dose increased from 1.2 to 6 mg/kg, and then decreased as the dose increased to 30 mg/kg. Tissue binding was further investigated by various graphical analyses. Some organs showed a monophasic (single site) Scatchard plot of the tissue data at steady state, with high K(D) values. In other organs, biphasic binding characteristics were observed with the K(D) values of the high-affinity site in the same range as the K(D) reported for the binding of CyA with cyclophilin, the putative target. Saturable tissue binding may therefore influence not only the pharmacokinetics but also the efficacy of CyA.
在以1.2、6和30mg/kg的环孢素A(CyA)单次剂量(通过2分钟静脉输注)给予大鼠后,广泛研究了其组织分布动力学。使用特异性放射免疫测定法测量血液和各种组织中的药物浓度。仅基于全血浓度数据,CyA的全身药代动力学似乎基本呈线性。然而,在考虑到可饱和的非线性血细胞结合后,发现了多个非线性因素。30mg/kg剂量时的内在清除率约为两个较低剂量时的一半。组织分布也呈剂量依赖性,许多组织中存在可饱和结合的证据。一般来说,血液结合饱和度(解离常数K(D)=0.18μg/ml)发生时的剂量(浓度)低于组织结合饱和度(K(D),0.005-0.77μg/g),因此稳态分布容积最初随着剂量从1.2mg/kg增加到6mg/kg而增加,然后随着剂量增加到30mg/kg而降低。通过各种图形分析进一步研究了组织结合情况。一些器官在稳态时组织数据的Scatchard图呈单相(单位点),K(D)值较高。在其他器官中,观察到双相结合特征,高亲和力位点的K(D)值与报道的CyA与假定靶点亲环蛋白结合的K(D)值在同一范围内。因此,可饱和的组织结合可能不仅影响CyA的药代动力学,还影响其疗效。