Chen Yueting, Zhang Zuo-Jing, Zhang Xiao-Feng, Peng Yuan, Jiao Zheng, Wu Jing-Xiang
Department of Pharmacy, Shanghai Chest Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, People's Republic of China.
Department of Anesthesiology, Shanghai Chest Hospital, Shanghai Jiao Tong University, School of Medicine, Shanghai, People's Republic of China.
Drug Des Devel Ther. 2025 Jun 16;19:5099-5109. doi: 10.2147/DDDT.S495604. eCollection 2025.
This study aimed to characterize the pharmacokinetics/pharmacodynamics (PK/PD) of remimazolam in patients under general anesthesia using a population analysis and to develop a web-based dashboard tool that directly displays the optimal dosing regimen for general anesthesia.
A total of 20 patients received remimazolam for general anesthesia, during which intensive arterial blood samples and bispectral index (BIS) values were collected. A population PK/PD model was established, and goodness-of-fit and visual predictive check plots were utilized to evaluate the model's accuracy. Additionally, RxODE and Shiny in R were used to design a web-based dashboard tool to recommend optimal dosing regimens.
The three-compartment model with first elimination best described the PK profiles of remimazolam. PK parameters were weight-adjusted via allometric scaling. The correlation between drug exposure and the BIS was optimally characterized through an effect compartment model employing an inhibitory sigmoid Emax model. In addition, a web-based dashboard tool was created to offer initial personalized dosing strategies for general anesthesia procedures, enhanced by graphical representations of the PK/PD profiles associated with the recommended dosing regimens.
The developed population PK/PD model effectively captured the dose-exposure-response relationship for remimazolam, allowing for the optimization of personalized dosing strategies.
本研究旨在通过群体分析来描述瑞马唑仑在全身麻醉患者中的药代动力学/药效学(PK/PD)特征,并开发一种基于网络的仪表盘工具,直接显示全身麻醉的最佳给药方案。
共有20例患者接受瑞马唑仑进行全身麻醉,在此期间采集了密集的动脉血样本和脑电双频指数(BIS)值。建立了群体PK/PD模型,并使用拟合优度和可视化预测检查图来评估模型的准确性。此外,利用R语言中的RxODE和Shiny设计了一个基于网络的仪表盘工具,以推荐最佳给药方案。
具有一级消除的三室模型能最好地描述瑞马唑仑的药代动力学特征。通过异速缩放对PK参数进行体重校正。通过采用抑制性S型Emax模型的效应室模型,最佳地描述了药物暴露与BIS之间的相关性。此外,还创建了一个基于网络 的仪表盘工具,为全身麻醉手术提供初始个性化给药策略,并通过与推荐给药方案相关的PK/PD曲线的图形表示进行强化。
所开发的群体PK/PD模型有效地捕捉了瑞马唑仑的剂量-暴露-反应关系,从而能够优化个性化给药策略。