论文标题

免疫系统衰老引起的脆弱性

Aging-induced fragility of the immune system

论文作者

Jones, Eric W., Sheng, Jiming, Carlson, Jean M., Wang, Shenshen

论文摘要

脊椎动物免疫系统的适应性和先天分支密切合作,以保护生物免受有害病原体的影响。随着生物体的年龄,其免疫系统经历免疫衰老,其特征是任何一种免疫分支的性能或功能故障,这可能导致疾病和死亡。在这项研究中,我们开发了耦合先天和适应性免疫反应的数学框架,即综合免疫分支(IIB)模型。该模型描述了两个分支中免疫成分的动力学,使用形状空间表示来编码病原体特异性免疫记忆,并表现出三种稳态 - 健康,化粪池死亡和慢性炎症 - 与临床上观察到的免疫结果质量相似。在此模型中,免疫系统(以健康状态初始化)经历了一系列病原体的遭遇,我们使用先前的病原体遇到的数量作为免疫系统“年龄”的代理。我们发现重复的病原体遇到可能会触发脆弱性,在这种脆弱性中,与新病原体的任何相遇都会导致该系统从健康状况不可逆地转变为慢性炎症。这种过渡与“炎症”的发作是一致的,即即使在没有病原体的情况下,在慢性低度炎症的老年人中也观察到的疾病。 IIB模型预测,慢性炎症的发作很大程度上取决于遇到的病原体的病史。当相同的感染以不同的顺序发生时,发作的时机截然不同。最后,先天和适应性免疫分支之间的耦合在快速病原体清除与免疫衰老的延迟发作之间产生了权衡。

The adaptive and innate branches of the vertebrate immune system work in close collaboration to protect organisms from harmful pathogens. As an organism ages its immune system undergoes immunosenescence, characterized by declined performance or malfunction in either immune branch, which can lead to disease and death. In this study we develop a mathematical framework of coupled innate and adaptive immune responses, namely the integrated immune branch (IIB) model. This model describes dynamics of immune components in both branches, uses a shape-space representation to encode pathogen-specific immune memory, and exhibits three steady states -- health, septic death, and chronic inflammation -- qualitatively similar to clinically-observed immune outcomes. In this model, the immune system (initialized in the health state) is subjected to a sequence of pathogen encounters, and we use the number of prior pathogen encounters as a proxy for the "age" of the immune system. We find that repeated pathogen encounters may trigger a fragility in which any encounter with a novel pathogen will cause the system to irreversibly switch from health to chronic inflammation. This transition is consistent with the onset of "inflammaging", a condition observed in aged individuals who experience chronic low-grade inflammation even in the absence of pathogens. The IIB model predicts that the onset of chronic inflammation strongly depends on the history of encountered pathogens; the timing of onset differs drastically when the same set of infections occurs in a different order. Lastly, the coupling between the innate and adaptive immune branches generates a trade-off between rapid pathogen clearance and a delayed onset of immunosenescence.

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