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A Dynamical Modeling to Study the Adaptive Immune System and the Influence of Antibodies in the Immune Memory

机译:研究自适应免疫系统及其抗体对免疫记忆的影响的动力学模型

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摘要

Immunological systems have been an abundant inspiration to contemporary computer scientists. Problem solving strategies, stemming from known immune system phenomena, have been successfully applied to challenging problems of modern computing. Simulation systems and mathematical modeling are also beginning use to answer more complex immunological questions as immune memory process and duration of vaccines, where the regulation mechanisms are not still known sufficiently (Lundegaard, Lund, Kesmir, Brunak, Nielsen, 2007). In this article we studied in machina a approach to simulate the process of antigenic mutation and its implications for the process of memory. Our results have suggested that the durability of the immune memory is affected by the process of antigenic mutation and by populations of soluble antibodies in the blood. The results also strongly suggest that the decrease of the production of antibodies favors the global maintenance of immune memory.
机译:免疫系统一直是当代计算机科学家的一大灵感。来自已知免疫系统现象的问题解决策略已成功应用于现代计算机的挑战性问题。模拟系统和数学模型也开始用于回答更复杂的免疫学问题,例如免疫记忆过程和疫苗的使用期限,在这些机制中,调节机制仍不清楚(Lundegaard,Lund,Kesmir,Brunak,Nielsen,2007年)。在本文中,我们在机械工业中研究了一种模拟抗原突变过程及其对记忆过程的影响的方法。我们的结果表明,免疫记忆的持久性受抗原突变过程和血液中可溶性抗体数量的影响。该结果还强烈表明抗体产生的减少有利于免疫记忆的整体维持。

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