Mahmood I, Balian J D
Division of Pharmaceutical Evaluation I, Food & Drug Administration, Rockville, MD 20852, USA.
J Pharm Sci. 1996 Apr;85(4):411-4. doi: 10.1021/js950400y.
The objective of this study was to test the interspecies-scaling approach in a series of antiepileptic drugs. Clearance, volume of distribution, and elimination half-life were scaled up from animal data obtained from literature. Four different methods were utilized to generate plots to scale up the clearance values: (i) clearance vs body weight (simple allometric equation); (ii) the product of clearance and maximum life-span potential (MLP) vs body weight (an approach recommended in literature); (iii) the two-term power equation which incorporates both body weight and brain weight suggested by Boxenbaum; and (iv) the product of clearance and brain weight vs body weight (a new approach being introduced in this study). When the predicted values for clearance were qualitatively compared with the observed values in humans, it was found that our proposed method predicted the clearance better than the other three methods. Using the simple allometric equation, the prediction of volume of distribution as a function of body weight was found to be satisfactory. The elimination half-life could not be predicted from simple allometric equations for any of the drugs studied; however, utilizing the equation CL = VK, prediction for half-life was feasible. The results of this study indicate that it is possible to predict reliably the pharmacokinetic parameters of these antiepileptic drugs in humans from animal data using an allometric approach.
本研究的目的是在一系列抗癫痫药物中测试种间缩放方法。清除率、分布容积和消除半衰期是根据从文献中获得的动物数据按比例放大的。使用了四种不同的方法来生成用于按比例放大清除率值的图:(i)清除率与体重(简单的异速生长方程);(ii)清除率与最大寿命潜力(MLP)的乘积与体重(文献中推荐的一种方法);(iii)Boxenbaum提出的结合体重和脑重的二项式幂方程;以及(iv)清除率与脑重的乘积与体重(本研究中引入的一种新方法)。当将清除率的预测值与人类的观测值进行定性比较时,发现我们提出的方法比其他三种方法能更好地预测清除率。使用简单的异速生长方程,发现分布容积作为体重函数的预测是令人满意的。对于所研究的任何药物,都无法从简单的异速生长方程预测消除半衰期;然而,利用方程CL = VK,可以预测半衰期。本研究结果表明,使用异速生长方法从动物数据可靠地预测这些抗癫痫药物在人体内的药代动力学参数是可能的。