首页> 外文期刊>Mathematical Biosciences: An International Journal >An agent-based modeling framework linking inflammation and cancer using evolutionary principles: Description of a generative hierarchy for the hallmarks of cancer and developing a bridge between mechanism and epidemiological data
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An agent-based modeling framework linking inflammation and cancer using evolutionary principles: Description of a generative hierarchy for the hallmarks of cancer and developing a bridge between mechanism and epidemiological data

机译:基于代理的建模框架,使用进化原理将炎症和癌症联系起来:描述了癌症特征的生成层次结构,并建立了机制与流行病学数据之间的桥梁

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Inflammation plays a critical role in the development and progression of cancer, evident in multiple patient populations manifesting increased, non-resolving inflammation, such as inflammatory bowel disease, viral hepatitis and obesity. Given the complexity of both the inflammatory response and the process of oncogenesis, we utilize principles from the field of Translational Systems Biology to bridge the gap between basic mechanistic knowledge and clinical/epidemiologic data by integrating inflammation and oncogenesis within an agent-based model, the Inflammation and Cancer Agent-based Model (ICABM). The ICABM utilizes two previously published and clinically/epidemiologically validated mechanistic models to demonstrate the role of an increased inflammatory milieu on oncogenesis. Development of the ICABM required the creation of a generative hierarchy of the basic hallmarks of cancer to provide a foundation to ground the plethora of molecular and pathway components currently being studied. The ordering schema emphasizes the essential role of a fitness/selection frame shift to sub-organismal evolution as a basic property of cancer, where the generation of genetic instability as a negative effect for multicellular eukaryotic organisms represents the restoration of genetic plasticity used as an adaptive strategy by colonies of prokaryotic unicellular organisms. Simulations with the ICABM demonstrate that inflammation provides a functional environmental context that drives the shift to sub-organismal evolution, where increasingly inflammatory environments led to increasingly damaged genomes in microtumors (tumors below clinical detection size) and cancers. The flexibility of this platform readily facilitates tailoring the ICABM to specific cancers, their associated mechanisms and available epidemiological data. One clinical example of an epidemiological finding that could be investigated with this platform is the increased incidence of triple negative breast cancers in the premenopausal African-American population, which has been identified as having up-regulated of markers of inflammation. The fundamental nature of the ICABM suggests its usefulness as a base platform upon which additional molecular detail could be added as needed. (C) 2014 Elsevier Inc. All rights reserved.
机译:炎症在癌症的发生和发展中起着至关重要的作用,在多个患者群体中表现出增加的,无法解决的炎症(例如炎症性肠病,病毒性肝炎和肥胖症)中很明显。考虑到炎症反应和肿瘤发生过程的复杂性,我们将转化系统生物学领域的原理通过将炎症和肿瘤发生整合到基于代理的模型中,从而弥合基本机制知识与临床/流行病学数据之间的差距。基于炎症和癌症代理的模型(ICABM)。 ICABM利用了两个先前已发布且经过临床/流行病学验证的机制模型,以证明炎症环境对肿瘤发生的作用。 ICABM的发展要求建立癌症基本特征的生成层次,为奠定目前正在研究的大量分子和途径成分的基础。排序模式强调适应性/选择框架向亚生物进化的重要作用,即将其作为癌症的基本特性,其中遗传不稳定性的产生对多细胞真核生物具有负面影响,代表了遗传可塑性的恢复,可用于适应性通过原核单细胞生物菌落的策略。用ICABM进行的模拟表明,炎症提供了一个功能性环境环境,从而推动了向亚生物进化的转变,在这种环境中,越来越多的炎症环境导致越来越多的微肿瘤(低于临床检测尺寸的肿瘤)和癌症中的基因组受损。该平台的灵活性可轻松促进针对特定癌症,其相关机制和现有流行病学数据定制ICABM。可以使用该平台进行调查的流行病学发现的一个临床例子是,绝经前非裔美国人人群中三阴性乳腺癌的发病率增加,这已被确定为炎症标志物上调。 ICABM的基本性质表明其作为基础平台的有用性,可以根据需要在其上添加其他分子细节。 (C)2014 Elsevier Inc.保留所有权利。

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