Yamashita T S, Lee H L, Reed M D
Division of Pediatric Pharmacology and Critical Care, Rainbow Babies and Childrens Hospital, Cleveland, Ohio 44106.
Int J Biomed Comput. 1988 Dec;23(3-4):239-49. doi: 10.1016/0020-7101(88)90017-7.
The accurate determination of area under the biologic fluid concentration-time curve (AUC) and area under the first moment curve (AUMC) are important in the calculation of a compound's pharmacokinetic parameter estimates. Although numerous mathematical methods exist for the calculation of both AUC and AUMC under varying conditions, some permit direct computation of areas, whereas others only approximate the true areas. In this study, we describe an alternative mathematical method which allows the direct calculation of either the AUC or AUMC after any dose of drug administered by any route. Simulated data with known areas were used to assess the accuracy of the proposed method and compared to area calculations obtained from widely used published methods. Experiments were also performed under conditions of varying elimination half-lives and reduced numbers of concentration-time values. Under any experimental condition, the newly proposed method was the most accurate in determining both the AUC and AUMC. Percent deviations from exact area values were less than or equal to 0.11% with the proposed method, whereas as much as 30% deviation was observed using other methods of calculation. These findings support the accuracy of the proposed method in calculating the AUC or AUMC and its utility in data analysis.
生物流体浓度-时间曲线(AUC)和一阶矩曲线下面积(AUMC)的准确测定在化合物药代动力学参数估计的计算中很重要。尽管存在许多数学方法可在不同条件下计算AUC和AUMC,但有些方法允许直接计算面积,而其他方法只能近似真实面积。在本研究中,我们描述了一种替代数学方法,该方法允许在通过任何途径给予任何剂量的药物后直接计算AUC或AUMC。使用具有已知面积的模拟数据来评估所提出方法的准确性,并与从广泛使用的已发表方法获得的面积计算结果进行比较。还在消除半衰期变化和浓度-时间值数量减少的条件下进行了实验。在任何实验条件下,新提出的方法在确定AUC和AUMC方面都是最准确的。所提出的方法与精确面积值的百分比偏差小于或等于0.11%,而使用其他计算方法观察到的偏差高达30%。这些发现支持了所提出方法在计算AUC或AUMC方面的准确性及其在数据分析中的实用性。