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Impact of acute fat mobilisation on the pharmacokinetics of the highly fat distributed compound TAK-357, investigated by physiologically based pharmacokinetic (PBPK) modeling and simulation

机译:急性脂肪动员对高脂肪分布复合复合TAK-357的药代动力学的影响,由生理基础的药代动力学(PBPK)建模和仿真研究

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摘要

In a dog toxicokinetic study, an unusual plasma concentration increase of the highly lipophilic compound TAK-357 was observed 2weeks after termination of a 2-week repeated dosing in one dog with acute body weight loss. The present study investigates the cause of this increase. A physiologically based pharmacokinetic (PBPK) model was constructed using the rat and dog pharmacokinetic data. Using the constructed model, the TAK-357 concentration profile in the case of body weight change was simulated. The PBPK model-derived simulation suggested that redistribution from adipose tissues to plasma due to a loss of body fat caused the observed concentration increase of TAK-357 in dog plasma. The analysis demonstrates that the disposition of a highly lipophilic and fat-distributed compound can be affected by acute changes in adipose tissue mass. PBPK modeling and simulation proved to be efficient tools for the quantitative hypothesis testing of apparently atypical PK phenomena resulting from acute physiological changes.
机译:在狗毒性研究中,在一只急性体重减轻的一只狗的一只狗终止后,观察到高亲脂性复合Tak-357的异常血浆浓度增加2周。本研究调查了这种增加的原因。使用大鼠和狗药代动力学数据构建生理基础的药代动力学(PBPK)模型。使用构造的模型,模拟了在体重变化的情况下的TAK-357浓度分布。 PBPK模型衍生的模拟表明,由于体脂的损失导致脂肪组织对血浆的再分布导致爪子血浆中达-357的观察到浓度增加。该分析表明,高亲脂性和脂肪分布的化合物的配置可以受脂肪组织质量急性变化的影响。 PBPK建模和仿真证明是急性生理变化导致明显非典型PK现象的定量假设检测的有效工具。

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