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Target‐Mediated Drug Disposition Model for Bispecific Antibodies: Properties, Approximation, and Optimal Dosing Strategy

机译:双特异性抗体的目标介导药物处置模型:性质,近似值和最佳给药策略

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Bispecific antibodies (BsAbs) bind to two different targets, and create two binary and one ternary complex (TC). These molecules have shown promise as immuno‐oncology drugs, and the TC is considered the pharmacologically active species that drives their pharmacodynamic effect. Here, we have presented a general target‐mediated drug disposition (TMDD) model for these BsAbs, which bind to two different targets on different cell membranes. The model includes four different binding events for BsAbs, turnover of the targets, and internalization of the complexes. In addition, a quasi‐equilibrium (QE) approximation with decreased number of binding parameters and, if necessary, reduced internalization parameters is presented. The model is further used to investigate the kinetics of BsAb and TC concentrations. Our analysis shows that larger doses of BsAbs may delay the build‐up of the TC. Consequently, a method to compute the optimal dosing strategy of BsAbs, which will immediately create and maintain maximal possible TC concentration, is presented.
机译:双特异性抗体(BsAbs)结合两个不同的靶标,并产生两个二元和一个三元复合物(TC)。这些分子已显示出作为免疫肿瘤学药物的前景,TC被认为是驱动其药效学作用的药理活性物质。在这里,我们介绍了这些BsAb的一般靶标介导的药物处置(TMDD)模型,该模型与不同细胞膜上的两个不同靶标结合。该模型包括四种不同的BsAb结合事件,靶标转换和复合物内在化。此外,还提出了一种准平衡(QE)近似方法,其中结合参数的数量减少了,并且在必要时减少了内部化参数。该模型还用于研究BsAb和TC浓度的动力学。我们的分析表明,较大剂量的BsAb可能会延迟TC的形成。因此,提出了一种计算BsAbs最佳剂量策略的方法,该方法将立即创建并保持最大可能的TC浓度。

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