Mihara K, Hojo T, Fujikawa M, Takakura Y, Sezaki H, Hashida M
Department of Basic Pharmaceutics, Faculty of Pharmaceutical Sciences, Kyoto University, Japan.
Pharm Res. 1993 Jun;10(6):823-7. doi: 10.1023/a:1018996808153.
The renal disposition characteristics of 111In-labeled neocarzinostatin (NCS), soybean trypsin inhibitor (STI), and superoxide dismutase (SOD) were studied in the perfused rat kidney. In a single-pass indicator dilution experiment, venous and urinary recovery profiles and tissue accumulation of proteins were determined under filtering or nonfiltering conditions. In the nonfiltering kidney perfusion experiment, no significant tissue accumulation was observed, suggesting minimal uptake from the glomerular and peritubular capillary sides. Therefore, tissue recovery corresponded to that with tubular reabsorption after glomerular filtration. The total amount of NCS or STI being filtrated through glomeruli, the sum of tissue and urinary recoveries, was similar to that of inulin, but that of SOD was about half. Similarly, the steady-state distribution volumes (Vd) of NCS and STI obtained by moment analysis of their venous outflow curves were similar to that of inulin, while the Vd value of SOD was significantly lower. These results suggest the restricted passage of SOD through the glomerular and postglomerular capillary wall. The tubular reabsorption ratio of proteins against the total filtrated amount decreased with an increase in the administered dose, suggesting nonlinearity of reabsorption. SOD had the largest reabsorption ratio. Thus, this experimental system is useful for quantitative analysis of renal disposition of proteins.
在灌注大鼠肾脏中研究了¹¹¹In标记的新制癌菌素(NCS)、大豆胰蛋白酶抑制剂(STI)和超氧化物歧化酶(SOD)的肾脏处置特征。在单通道指示剂稀释实验中,在过滤或非过滤条件下测定蛋白质的静脉和尿液回收曲线以及组织蓄积情况。在非过滤肾脏灌注实验中,未观察到明显的组织蓄积,提示从肾小球和肾小管周围毛细血管侧的摄取极少。因此,组织回收与肾小球滤过后的肾小管重吸收情况一致。通过肾小球滤过的NCS或STI总量,即组织和尿液回收量之和,与菊粉相似,但SOD的约为其一半。同样,通过对其静脉流出曲线进行矩分析得到的NCS和STI的稳态分布容积(Vd)与菊粉相似,而SOD的Vd值显著较低。这些结果提示SOD通过肾小球和肾小球后毛细血管壁的通透性受限。蛋白质相对于总滤过量的肾小管重吸收率随给药剂量增加而降低,提示重吸收的非线性。SOD的重吸收率最大。因此,该实验系统可用于蛋白质肾脏处置的定量分析。