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Incorporation of FcRn-mediated disposition model to describe the population pharmacokinetics of therapeutic monoclonal IgG antibody in clinical patients

机译:纳入FcRn介导的处置模型以描述临床患者中治疗性单克隆IgG抗体的群体药代动力学

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Purpose. The two-compartment linear model used to describe the population pharmacokinetics (PK) of many therapeutic monoclonal antibodies (TMAbs) offered little biological insight to antibody disposition in humans. The purpose of this study is to develop a semi-mechanistic FcRn-mediated IgG disposition model to describe the population PK of TMAbs in clinical patients. Methods. A standard two-compartment linear PK model from a previously published population PK model of pertuzumab was used to simulate intensive PK data of 100 subjects for model development. Two different semi-mechanistic FcRn-mediated IgG disposition models were developed and First Order Conditional Estimation (FOCE) with the interaction method in NONMEM was used to obtain the final model estimates. The performances of these models were then compared with the two-compartment linear PK model used to simulate the data for model development. Results. A semi-mechanistic FcRn-mediated IgG disposition model consisting of a peripheral tissue compartment and FcRn-containing endosomes in the central compartment best describes the simulated pertuzumab population PK data. This developed semi-mechanistic population PK model had the same number of model parameters, produced very similar concentration-time profiles but provided additional biological insight to the FcRn-mediated IgG disposition in human subjects compared with the standard linear two-compartment linear PK model. Conclusion. This first reported semi-mechanistic model may serve as an important model framework for developing future population PK models of TMAbs in clinical patients. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:目的。用于描述许多治疗性单克隆抗体(TMAb)的群体药代动力学(PK)的两室线性模型对人体内抗体的处理几乎没有生物学认识。这项研究的目的是建立一种半机械FcRn介导的IgG处置模型,以描述临床患者中TMAb的种群PK。方法。来自先前发表的帕妥珠单抗人群PK模型的标准两室线性PK模型用于模拟100位受试者的密集PK数据以进行模型开发。建立了两种不同的半机械FcRn介导的IgG处置模型,并使用NONMEM中的相互作用方法进行一阶条件估计(FOCE)以获得最终模型估计。然后将这些模型的性能与用于模拟数据以进行模型开发的两室线性PK模型进行比较。结果。由外围组织区室和中央区室中包含FcRn的内体组成的半机械FcRn介导的IgG处置模型最好地描述了模拟的帕妥珠单抗群体PK数据。与标准线性两室线性PK模型相比,这种发达的半机械种群PK模型具有相同数量的模型参数,产生的浓度-时间曲线非常相似,但为FcRn介导的IgG在人受试者中的沉积提供了更多的生物学见解。结论。该首次报道的半机制模型可以作为开发临床患者中TMAb的未来人群PK模型的重要模型框架。版权所有(c)2015 John Wiley&Sons,Ltd.

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