Kimura T, Kanzaki Y, Matsumoto Y, Mandai M, Kurosaki Y, Nakayama T
Faculty of Pharmaceutical Sciences, Okayama University, Japan.
Biol Pharm Bull. 1994 Feb;17(2):310-5. doi: 10.1248/bpb.17.310.
The pharmacokinetics of recombinant human insulin-like growth factor-I (rhIGF-I) was examined in normal and hypophysectomized (Hypox) rats after i.v. administration. The plasma concentration of rhIGF-I administered i.v. (0.32, 1.0 and 3.2 mg/kg) declined biexponentially in both normal and Hypox rats. Half-lives of the beta-phase were not significantly different among the doses examined in both animal groups, but were shorter in Hypox rats. In Hypox rats, the values of the area under the plasma concentration-time curve, the mean residence time, the variance of residence time and the apparent volume of distribution at steady-state decreased, while the total body clearance (CLtotal) increased. The distribution of rhIGF-I after i.v. administration (1.0 mg/kg) was examined in normal rats. High distribution to the kidney was observed at early time points (5 min and 1 h), but no significant distribution was found in other tissues. The ligation of renal vasculature greatly reduced the CLtotal, suggesting that the kidney is the main elimination organ. In spite of the rapid distribution of rhIGF-I to the kidney, the urinary excretion of intact rhIGF-I was negligible. Thus, the metabolism of rhIGF-I in the kidney was examined in vitro, and the results showed extensive metabolism in the brush border and lysosomal fractions of tubular cells. In the plasma of normal rats, rhIGF-I formed the 50 kDa complex first, and the 150 kDa complex was formed slowly.(ABSTRACT TRUNCATED AT 250 WORDS)
静脉注射后,在正常大鼠和垂体切除(Hypox)大鼠中研究了重组人胰岛素样生长因子-I(rhIGF-I)的药代动力学。静脉注射rhIGF-I(0.32、1.0和3.2mg/kg)后,正常大鼠和Hypox大鼠的血浆浓度均呈双指数下降。在两个动物组中,所检测剂量的β相半衰期无显著差异,但Hypox大鼠的半衰期较短。在Hypox大鼠中,血浆浓度-时间曲线下面积、平均驻留时间、驻留时间方差和稳态时的表观分布容积值降低,而总体清除率(CLtotal)增加。在正常大鼠中研究了静脉注射(1.0mg/kg)后rhIGF-I的分布。在早期时间点(5分钟和1小时)观察到rhIGF-I在肾脏中的高分布,但在其他组织中未发现显著分布。结扎肾血管大大降低了CLtotal,表明肾脏是主要的消除器官。尽管rhIGF-I迅速分布到肾脏,但完整rhIGF-I的尿排泄可忽略不计。因此,在体外研究了rhIGF-I在肾脏中的代谢,结果表明在肾小管细胞的刷状缘和溶酶体部分有广泛的代谢。在正常大鼠血浆中,rhIGF-I首先形成50kDa复合物,然后缓慢形成150kDa复合物。(摘要截断于250字)