评估药物相互作用和食物对BCS类2化合物BI 730357 (视酸相关孤儿受体马对抗剂,Bevurogant) 的影响,使用基于生理学的药理动力学建模 (PBPK) 方法,采用半机械吸收方法
Tobias Kanacher1, Erik Sjögren1, Julia Korell2
1Pharmetheus AB, 753 19 Uppsala, Sweden.
Pharmaceutics
|March 27, 2025
概括
对药物BI 730357的生理学基础药理动力学 (PBPK) 模型准确预测了其吸收和食物影响. 这种PBPK模型可以预测BI 730357.7的药物相互作用.
科学领域:
- 药理动力学 药理动力学
- 药物开发 药物开发
- 计算建模 计算建模
背景情况:
- 一种BCSII类药物BI 730357在健康人群中表现出异常的口服吸收.
- 传统的解卷方法未能解释配方依赖的吸收模式.
研究的目的:
- 为BI 730357.7开发一个基于生理学的药理动力学 (PBPK) 模型.
- 描述药物吸收动力学,包括食物的影响和配方依赖.
主要方法:
- 使用PK-Sim®软件创建了一个PBPK模型.
- 韦布尔函数模拟了体内配方动力学;结肠吸收是晚期药理动力学阶段的关键.
- 使用PK-Sim®的功能将食物效应纳入.
主要成果:
- 该PBPK模型准确地预测了在禁食的受试者中伊特拉科纳的药物相互作用 (DDI).
- 该模型模拟了瑞芬素 (一种CYP3A4诱导剂) 对食受试者BI 730357药理动学的影响.
结论:
- 开发的带有半机械吸收的PBPK模型有效预测BI 730357的药理动力学.
- 该模型可以前性地评估CYP3A4抑制剂/诱导剂对BI 730357在食/禁食状态下的药理动力学的影响.
相关概念视频
Physiological Pharmacokinetic Models: Incorporating Hepatic Transporter-Mediated Clearance
23
Drug transporters are critical in drug absorption, distribution, and excretion processes. They should be included in physiological-based pharmacokinetic (PBPK) models, which help predict human drug disposition. However, predicting this is challenging during drug development, especially when liver transport is involved. However, with a realistic representation of body transport processes, an accurate model may be possible.
A recent model describes pravastatin's hepatobiliary excretion,...
A recent model describes pravastatin's hepatobiliary excretion,...
23
Factors Influencing Drug Absorption: Drug Dissolution
393
The pharmacokinetic journey of drugs from solid oral dosage forms into systemic circulation is multifaceted. It begins with disintegration, a prerequisite ensuring a solid dosage form's subdivision into minute particles. Dissolution occurs next as these granulated entities solubilize in gastrointestinal fluids. This solubilization is crucial for the succeeding stage, permeation, which describes the traversal of the drug across the intestinal membrane and its subsequent entry into the blood...
393
Factors Influencing Drug Absorption: Physicochemical Parameters
192
The physicochemical characteristics of drugs play a crucial role in formulating stable and bioavailable drug products. The solubility of a drug, governed by the varying pH along the GI tract and its dissociation constant (pKa), is pivotal in determining its ionization state and absorption rate. Notably, weak acids and bases remain unionized and are absorbed more rapidly.
Enhanced drug absorption can be achieved by reducing particle sizes and increasing surface areas, thereby facilitating...
Enhanced drug absorption can be achieved by reducing particle sizes and increasing surface areas, thereby facilitating...
192
Physiological Pharmacokinetic Models: Assumption with Protein Binding
29
Physiological models with protein binding in pharmacokinetics offer a sophisticated approach to understanding drug disposition. These models consider drug-protein interactions, enabling them to effectively predict drug concentrations in different organs and tissues. This precision aids in accurate drug dosing, providing a significant advantage over conventional models. A key process within these models is equilibration, which ensures that drug concentrations achieve a steady state within the...
29
Factors Influencing Drug Absorption: Disease States and Pharmacology
384
Multiple disease states can significantly influence the oral drug absorption process by affecting blood flow and the functionality of the gastrointestinal (GI) system. Various GI diseases, including conditions that alter GI motility, such as diarrhea, decreased acid secretions (achlorhydria), and infections, have been associated with reduced drug absorption.
Substances such as alcohol and specific drugs, including antineoplastics, can also negatively impact drug absorption. For instance,...
Substances such as alcohol and specific drugs, including antineoplastics, can also negatively impact drug absorption. For instance,...
384
Hepatic Drug Clearance: Role of Transporters
31
In the liver and bile canaliculi, influx and efflux transporters modification can influence intrinsic clearance. Transporters play a significant role in moving drugs within liver cells. Elaborate models, such as the Biopharmaceutical Classification System (BCS), are essential to relate transporters to drug disposition. This system categorizes drugs into four classes based on solubility and permeability, providing insights into elimination routes and the effects of transporters following oral...
31


