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Development of Immune-Specific Interaction Potentials and Their Application in the Multi-Agent-System VaccImm

机译:免疫特异性相互作用电位的发展及其在多智能体疫苗中的应用

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摘要

Peptide vaccination in cancer therapy is a promising alternative to conventional methods. However, the parameters for this personalized treatment are difficult to access experimentally. In this respect, in silico models can help to narrow down the parameter space or to explain certain phenomena at a systems level. Herein, we develop two empirical interaction potentials specific to B-cell and T-cell receptor complexes and validate their applicability in comparison to a more general potential. The interaction potentials are applied to the model VaccImm which simulates the immune response against solid tumors under peptide vaccination therapy. This multi-agent system is derived from another immune system simulator (C-ImmSim) and now includes a module that enables the amino acid sequence of immune receptors and their ligands to be taken into account. The multi-agent approach is combined with approved methods for prediction of major histocompatibility complex (MHC)-binding peptides and the newly developed interaction potentials. In the analysis, we critically assess the impact of the different modules on the simulation with VaccImm and how they influence each other. In addition, we explore the reasons for failures in inducing an immune response by examining the activation states of the immune cell populations in detail.In summary, the present work introduces immune-specific interaction potentials and their application to the agent-based model VaccImm which simulates peptide vaccination in cancer therapy.
机译:癌症治疗中的肽疫苗接种是常规方法的有希望的替代方法。但是,这种个性化治疗的参数很难通过实验获得。在这方面,计算机模型可以帮助缩小参数空间或在系统级别解释某些现象。在本文中,我们开发了两种针对B细胞和T细胞受体复合物的经验相互作用势,并与更普遍的势相比,验证了它们的适用性。相互作用电位被施加到模型VaccImm上,该模型模拟在肽疫苗治疗下针对实体瘤的免疫应答。这种多代理系统源自另一个免疫系统模拟器(C-ImmSim),现在包括一个模块,该模块可以考虑免疫受体及其配体的氨基酸序列。多代理方法与已批准的预测主要组织相容性复合物(MHC)结合肽和新开发的相互作用潜能的方法相结合。在分析中,我们严格评估了不同模块对使用VaccImm进行仿真的影响以及它们如何相互影响。此外,我们通过详细检查免疫细胞群体的激活状态来探索诱导免疫应答失败的原因。总而言之,本工作介绍了免疫特异性相互作用的潜力及其在基于代理的模型VaccImm中的应用。模拟癌症治疗中的肽疫苗接种。

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