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A Dynamic Quantitative Systems Pharmacology Model of Inflammatory Bowel Disease: Part 1 – Model Framework

机译:炎症性肠病动态定量系统药理学模型:第1部分 - 模型框架

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摘要

A mechanistic, multistate, mathematical model of inflammatory bowel disease (IBD) was developed by including key biological mechanisms in blood and gut, including cell differentiation, cytokine production, and clinical biomarkers. The model structure is consistent between healthy volunteers and IBD disease phenotype, with 24 parameters changed between diseases. Modular nature of the model allows for easy incorporation of new mechanisms or modification of existing interactions. Model simulations for steady‐state levels of proteins and cells in the blood and gut using a population approach are consistent with published data. By simulating the response of two clinical biomarkers, C‐reactive protein and fecal calprotectin, to parameter perturbations, the model explores hypotheses for possible treatment mechanisms. With additional experimental validation and addition of drug treatments, the model provides a platform to test hypothesis on treatment effects in IBD.
机译:通过包括血液和肠道的关键生物机制,包括细胞分化,细胞因子生产和临床生物标志物,开发了一种机械,多体数学模型(IBD)的数学模型。模型结构与健康志愿者和IBD疾病表型之间一致,24个参数在疾病之间发生变化。模型的模块化性质允许轻松地结合现有交互的新机制或修改。使用人口方法的血液和肠道中稳态水平的模型模拟和血液和肠道的细胞与已发表的数据一致。通过模拟两种临床生物标志物,C反应蛋白和粪便冲击蛋白的响应,对参数扰动,模型探讨了可能的处理机制的假设。通过额外的实验验证和添加药物治疗,该模型提供了一种测试假设对IBD治疗效果的平台。

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