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首页> 外文期刊>Pharmaceutical research >Modeling and simulation of hepatic drug disposition using a physiologically based, multi-agent in silico liver.
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Modeling and simulation of hepatic drug disposition using a physiologically based, multi-agent in silico liver.

机译:使用基于生理的,多剂的硅肝对肝脏药物处置进行建模和仿真。

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PURPOSE: Validate a physiologically based, mechanistic, in silico liver (ISL) for studying the hepatic disposition and metabolism of antipyrine, atenolol, labetalol, diltiazem, and sucrose administered alone or in combination. MATERIALS AND METHODS: Autonomous software objects representing hepatic components such as metabolic enzymes, cells, and microarchitectural details were plugged together to form a functioning liver analogue. Microarchitecture features were represented separately from drug metabolizing functions. Each ISL component interacts uniquely with mobile objects. Outflow profiles were recorded and compared to wet-lab data. A single ISL structure was selected, parameterized, and held constant for all compounds. Parameters sensitive to drug-specific physicochemical properties were tuned so that ISL outflow profiles matched in situ outflow profiles. RESULTS: ISL simulations were validated separately and together against in situ data and prior physiologically based pharmacokinetic (PBPK) predictions. The consequences of ISL parameter changes on outflow profiles were explored. Selected changes altered outflow profiles in ways consistent with knowledge of hepatic anatomy and physiology and drug physicochemical properties. CONCLUSIONS: A synthetic, agent-oriented in silico liver has been developed and successfully validated, enabling us to posit that static and dynamic ISL mechanistic details, although abstract, map realistically to hepatic mechanistic details in PBPK simulations.
机译:目的:验证基于生理学的,机械的硅肝(ISL),以研究单独或联合给药的安替比林,阿替洛尔,拉贝洛尔,地尔硫卓和蔗糖的肝处置和代谢。材料和方法:将代表肝脏成分(例如代谢酶,细胞和微体系结构细节)的自主软件对象插入在一起,以形成功能良好的肝脏类似物。微结构特征与药物代谢功能分开表示。每个ISL组件都与移动对象进行唯一交互。记录流出曲线并将其与湿实验室数据进行比较。对于所有化合物,都选择一个单一的ISL结构,对其进行参数化并使其保持恒定。调整了对药物特异性理化特性敏感的参数,以使ISL流出曲线与原位流出曲线相匹配。结果:ISL模拟分别针对现场数据和先前基于生理的药代动力学(PBPK)预测进行了验证。探索了ISL参数更改对流出剖面的影响。选定的变化以与肝解剖和生理学以及药物理化特性​​相一致的方式改变了流出曲线。结论:合成,面向代理的硅肝已经开发并成功验证,使我们能够假设静态和动态的ISL机制细节,尽管是抽象的,却可以逼真的映射到PBPK模拟中的肝机制细节。

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