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Physiologically Based Pharmacokinetic Model of Amphotericin B Disposition in Rats Following Administration of Deoxycholate Formulation (Fungizone®): Pooled Analysis of Published Data

机译:脱氧胆酸盐制剂(Fungizone®)给药后大鼠两性霉素B处置的基于生理的药代动力学模型:公开数据的汇总分析

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摘要

The time course of tissue distribution of amphotericin B (AmB) has not been sufficiently characterized despite its therapeutic importance and an apparent disconnect between plasma pharmacokinetics and clinical outcomes. The goals of this work were to develop and evaluate a physiologically based pharmacokinetic (PBPK) model to characterize the disposition properties of AmB administered as deoxycholate formulation in healthy rats and to examine the utility of the PBPK model for interspecies scaling of AmB pharmacokinetics. AmB plasma and tissue concentration–time data, following single and multiple intravenous administration of Fungizone® to rats, from several publications were combined for construction of the model. Physiological parameters were fixed to literature values. Various structural models for single organs were evaluated, and the whole-body PBPK model included liver, spleen, kidney, lung, heart, gastrointestinal tract, plasma, and remainder compartments. The final model resulted in a good simultaneous description of both single and multiple dose data sets. Incorporation of three subcompartments for spleen and kidney tissues was required for capturing a prolonged half-life in these organs. The predictive performance of the final PBPK model was assessed by evaluating its utility in predicting pharmacokinetics of AmB in mice and humans. Clearance and permeability–surface area terms were scaled with body weight. The model demonstrated good predictions of plasma AmB concentration–time profiles for both species. This modeling framework represents an important basis that may be further utilized for characterization of formulation- and disease-related factors in AmB pharmacokinetics and pharmacodynamics.
机译:尽管两性霉素B(AmB)具有治疗重要性,并且血浆药代动力学和临床结果之间明显脱节,但尚未充分表征其组织分布的时程。这项工作的目的是开发和评估基于生理的药代动力学(PBPK)模型,以表征在健康大鼠中以脱氧胆酸盐制剂形式给药的AmB的处置特性,并检验PBPK模型对于AmB药代动力学种间缩放的实用性。将来自几篇出版物的Fungizone®单次和多次静脉内给药后,将AmB血浆和组织的浓度-时间数据结合起来,以建立模型。生理参数固定为文献值。评估了单个器官的各种结构模型,全身PBPK模型包括肝,脾,肾,肺,心脏,胃肠道,血浆和其余部分。最终模型对单个和多个剂量数据集产生了良好的同步描述。为了捕获这些器官中延长的半衰期,需要为脾脏和肾脏组织合并三个小室。通过评估最终PBPK模型在预测小鼠和人类AmB药代动力学中的效用,评估了其预测性能。清除率和渗透率–表面积术语与体重成比例。该模型展示了两种物种血浆AmB浓度-时间曲线的良好预测。该建模框架代表了重要的基础,可进一步用于表征AmB药代动力学和药效学中与制剂和疾病相关的因素。

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