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通过生理药代动力学(PBPK)建模与模拟研究一种新型抗埃博拉病毒双特异性抗体(MBS77E)从动物到人体的转化药代动力学。

Translational pharmacokinetics of a novel bispecific antibody against Ebola virus (MBS77E) from animal to human by PBPK modeling & simulation.

作者信息

Zhang Wenpeng, Xiang Yanan, Wang Lingchao, Wang Furun, Li Guanglu, Zhuang Xiaomei

机构信息

State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, Beijing, China.

State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, Beijing, China.

出版信息

Int J Pharm. 2022 Oct 15;626:122160. doi: 10.1016/j.ijpharm.2022.122160. Epub 2022 Sep 9.

Abstract

The goal of this study was to construct a PBPK model to accelerate the translation of MBS77E, a humanized bispecific antibody against the Ebola virus. In-depth nonclinical pharmacokinetic studies in rats, monkeys, wild-type mice and transgenic mice were conducted. The pH-dependent affinities (K) of MBS77E to recombinant FcRn of different species were determined by surface plasmon resonance analysis. A mechanistic whole-body PBPK model of MBS77E was developed and validated in the assessment of PK profiles and tissue distributions in preclinical models. This PBPK model was finally used to predict human PK behaviors of MBS77E. Simulations from the PBPK model with measured and fitted parameters were able to yield good predictions of the serum and tissue pharmacokinetic parameters of MBS77E within 2-fold errors. The predicted serum concentration in humans was able to maintain a sufficiently high level for more than 14 days after 50 mg/kg i.v. administrating. This achievement unlocks that PBPK modeling is a powerful tool to gain insights into the properties of antibody drugs. It guided experimental efforts to obtain necessary information before entry into humans.

摘要

本研究的目的是构建一个生理药代动力学(PBPK)模型,以加速抗埃博拉病毒人源化双特异性抗体MBS77E的转化。在大鼠、猴子、野生型小鼠和转基因小鼠中进行了深入的非临床药代动力学研究。通过表面等离子体共振分析确定了MBS77E对不同物种重组FcRn的pH依赖性亲和力(K)。建立了MBS77E的机制性全身PBPK模型,并在评估临床前模型中的药代动力学特征和组织分布时进行了验证。该PBPK模型最终用于预测MBS77E在人体中的药代动力学行为。使用测量和拟合参数的PBPK模型进行的模拟能够在2倍误差范围内对MBS77E的血清和组织药代动力学参数做出良好预测。在静脉注射50 mg/kg后,预测的人体血清浓度能够在14天以上保持足够高的水平。这一成果表明PBPK建模是深入了解抗体药物特性的有力工具。它指导了在进入人体之前获取必要信息的实验工作。

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