Kim S H, Kim W B, Lee M G
College of Pharmacy, Seoul National University, Republic of Korea.
Biopharm Drug Dispos. 1998 May;19(4):231-5. doi: 10.1002/(sici)1099-081x(199805)19:4<231::aid-bdd96>3.0.co;2-e.
The total body clearance (CI), renal clearance (CIr), and apparent volume of distribution at steady state (Vss) of DA-1131, a new carbapenem, after intravenous (iv) administration of the drug, 50 mg kg-1, to mice, rats, rabbits, and dogs were analysed as a function of species body weight (W) using the allometric equation for interspecies scaling, and were used to predict these parameters in humans. Significant linear relationships were obtained between log[CI (L h-1)] and log[W (kg)] (r = 0.995; p = 0.00503), log [CI, (L h-1)] and log [W (kg)] (r = 0.998; p = 0.0429), and log [Vss (L)] and log [W (kg)] (r = 0.987; p = 0.0126). The corresponding allometric equations were CI = 0.706W 0811, CIr = 0.318W 0.888, an V88 = 0.194W 0981. These allometric equations were extrapolated to predict the CI and Vss for DA-1131 in humans based on 70 kg body weight. The CI and Vss for humans predicted from the four animal data well fitted to regression lines of animal data. Interspecies scale-up of plasma concentration-time data for the four species using a complex Dedrick plot resulted in similar profiles. In addition, the concentration in plasma-time profile predicted that the DA-1131 data obtained from laboratory animals could be utilized to generate preliminary estimates of the pharmacokinetic parameters in humans. These parameters can serve as guidelines for better planning of clinical studies.
将新型碳青霉烯类药物DA - 1131以50 mg/kg的剂量静脉注射给小鼠、大鼠、兔子和狗后,根据种间缩放的异速生长方程,分析了该药物的总体清除率(CI)、肾清除率(CIr)和稳态表观分布容积(Vss)与物种体重(W)的关系,并用于预测人体中的这些参数。log[CI(L/h)]与log[W(kg)](r = 0.995;p = 0.00503)、log[CIr(L/h)]与log[W(kg)](r = 0.998;p = 0.0429)以及log[Vss(L)]与log[W(kg)](r = 0.987;p = 0.0126)之间均获得了显著的线性关系。相应的异速生长方程分别为CI = 0.706W^0.811、CIr = 0.318W^0.888和Vss = 0.194W^0.981。基于70 kg体重,外推这些异速生长方程以预测人体中DA - 1131的CI和Vss。从四种动物数据预测的人体CI和Vss与动物数据的回归线拟合良好。使用复杂的德德里克图对这四个物种的血浆浓度 - 时间数据进行种间放大,得到了相似的曲线。此外,血浆浓度 - 时间曲线预测,从实验动物获得的DA - 1131数据可用于生成人体药代动力学参数的初步估计值。这些参数可为更好地规划临床研究提供指导。