Semi-Mechanistic Modeling of S-531011, a Humanized Anti-CCR8 Monoclonal Antibody, for Prediction of CCR8 Receptor Occupancy in Human Tumor Tissues.

IF 2.8 3区 医学 Q2 PHARMACOLOGY & PHARMACY
Daichi Yamaguchi, Wataru Nogami, Yudai Sonoda, Hitomi Morihara, Takayuki Katsube
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Abstract

Semi-mechanistic modeling approaches could be useful for optimal dose selection, and one of the approaches is pharmacokinetic (PK)/receptor occupancy (RO) model for monoclonal antibodies. This study aimed to develop a semi-mechanistic PK/RO model of S-531011, a humanized monoclonal antibody against human CCR8 and under development for the treatment of solid tumors, in order to predict human RO values in tumor tissues which are not available in the ongoing clinical study. The model consists of three compartments (central, peripheral, and tumor) and includes four compartments (S-531011, CCR8, and complexes 1/2 within each compartment). The model parameters were set using available clinical data, non-clinical data, and physiological information. The human PK/RO model was developed by refinement of a mouse PK/RO model. The time courses of RO values in the tumor compartment were simulated using the model, together with a conservative condition of slow transfer of S-531011 from blood to the tumor. It was predicted that the RO value in the tumor compartment at 21 days (trough after the third dose after administration of S-531011 80 mg) would be maintained at > 90% under typical model assumptions. Under the conservative condition, the RO value in the tumor after administration of S-531011 800 mg would remain at > 90%. The developed semi-mechanistic PK/RO model could predict human RO values of S-531011 in tumor tissues. Under typical model assumptions, simulations suggested the dose range of 80-800 mg of S-531011 every 3 weeks would achieve > 90% RO in tumor tissues.

人源抗CCR8单克隆抗体S-531011在人肿瘤组织中预测CCR8受体占用的半机制建模
半机械建模方法可用于最佳剂量选择,其中一种方法是单克隆抗体的药代动力学(PK)/受体占用(RO)模型。本研究旨在建立针对人CCR8的人源化单克隆抗体S-531011的半机械性PK/RO模型,用于预测肿瘤组织中尚未在临床研究中获得的RO值。该模型由三个室(中央、外周和肿瘤)组成,包括四个室(S-531011、CCR8和每个室内的复合物1/2)。模型参数设置使用现有的临床数据、非临床数据和生理信息。人类PK/RO模型是在小鼠PK/RO模型的基础上建立的。在S-531011从血液缓慢转移到肿瘤的保守条件下,利用该模型模拟肿瘤腔室RO值的时间过程。在典型模型假设下,预测21天(S-531011 80mg给药后第三次给药后的低谷)肿瘤腔室RO值维持在bb0 ~ 90%。保守情况下,给药S-531011 800 mg后,肿瘤内RO值维持在bb0 - 90%。建立的半机械性PK/RO模型可以预测S-531011在人肿瘤组织中的RO值。在典型模型假设下,模拟结果表明,S-531011每3周剂量范围为80 ~ 800 mg,可使肿瘤组织RO达到90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.00
自引率
11.40%
发文量
146
审稿时长
8 weeks
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