The Basic Immune Simulator: an agent-based model to study the interactions between innate and adaptive immunity.

Q1 Mathematics
Virginia A Folcik, Gary C An, Charles G Orosz
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引用次数: 163

Abstract

Background: We introduce the Basic Immune Simulator (BIS), an agent-based model created to study the interactions between the cells of the innate and adaptive immune system. Innate immunity, the initial host response to a pathogen, generally precedes adaptive immunity, which generates immune memory for an antigen. The BIS simulates basic cell types, mediators and antibodies, and consists of three virtual spaces representing parenchymal tissue, secondary lymphoid tissue and the lymphatic/humoral circulation. The BIS includes a Graphical User Interface (GUI) to facilitate its use as an educational and research tool.

Results: The BIS was used to qualitatively examine the innate and adaptive interactions of the immune response to a viral infection. Calibration was accomplished via a parameter sweep of initial agent population size, and comparison of simulation patterns to those reported in the basic science literature. The BIS demonstrated that the degree of the initial innate response was a crucial determinant for an appropriate adaptive response. Deficiency or excess in innate immunity resulted in excessive proliferation of adaptive immune cells. Deficiency in any of the immune system components increased the probability of failure to clear the simulated viral infection.

Conclusion: The behavior of the BIS matches both normal and pathological behavior patterns in a generic viral infection scenario. Thus, the BIS effectively translates mechanistic cellular and molecular knowledge regarding the innate and adaptive immune response and reproduces the immune system's complex behavioral patterns. The BIS can be used both as an educational tool to demonstrate the emergence of these patterns and as a research tool to systematically identify potential targets for more effective treatment strategies for diseases processes including hypersensitivity reactions (allergies, asthma), autoimmunity and cancer. We believe that the BIS can be a useful addition to the growing suite of in-silico platforms used as an adjunct to traditional research efforts.

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基本免疫模拟器:一个基于主体的模型,用于研究先天免疫和适应性免疫之间的相互作用。
背景:我们介绍了基础免疫模拟器(BIS),这是一个基于代理的模型,旨在研究先天免疫系统和适应性免疫系统细胞之间的相互作用。先天免疫是宿主对病原体的最初反应,通常先于适应性免疫,后者会产生抗原的免疫记忆。BIS模拟基本细胞类型、介质和抗体,由三个虚拟空间组成,代表实质组织、次级淋巴组织和淋巴/体液循环。BIS包括一个图形用户界面(GUI),以便于将其用作教育和研究工具。结果:BIS用于定性检查对病毒感染的免疫反应的先天和适应性相互作用。校准是通过初始药剂种群大小的参数扫描以及模拟模式与基础科学文献中报道的模式的比较来完成的。BIS证明,初始先天反应的程度是适当适应性反应的关键决定因素。先天免疫的缺乏或过度导致适应性免疫细胞的过度增殖。任何免疫系统成分的缺乏都会增加无法清除模拟病毒感染的可能性。结论:BIS的行为符合一般病毒感染情况下的正常和病理行为模式。因此,BIS有效地转化了有关先天和适应性免疫反应的机制细胞和分子知识,并再现了免疫系统的复杂行为模式。BIS既可以作为一种教育工具来证明这些模式的出现,也可以作为一个研究工具来系统地确定更有效的疾病治疗策略的潜在靶点,包括超敏反应(过敏、哮喘)、自身免疫和癌症。我们相信,BIS可以作为传统研究工作的辅助工具,对不断增长的一套计算机内平台进行有益的补充。
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来源期刊
Theoretical Biology and Medical Modelling
Theoretical Biology and Medical Modelling MATHEMATICAL & COMPUTATIONAL BIOLOGY-
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Theoretical Biology and Medical Modelling is an open access peer-reviewed journal adopting a broad definition of "biology" and focusing on theoretical ideas and models associated with developments in biology and medicine. Mathematicians, biologists and clinicians of various specialisms, philosophers and historians of science are all contributing to the emergence of novel concepts in an age of systems biology, bioinformatics and computer modelling. This is the field in which Theoretical Biology and Medical Modelling operates. We welcome submissions that are technically sound and offering either improved understanding in biology and medicine or progress in theory or method.
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