论文标题

对具有阿尔茨海默氏病的炎症过程的$β$ - 工艺模型的定性分析

A qualitative analysis of a A$β$-monomer model with inflammation processes for Alzheimer's disease

论文作者

Ciuperca, Ionel, Pujo-Menjouet, Laurent, Matar-Tine, Leon, Torres, Nicolas, Volpert, Vitaly

论文摘要

我们介绍并研究了一个新的模型,以通过不同的机制(例如蛋白质聚合,炎症过程和神经应激反应)等不同机制(例如$β$ - 摩根,低聚物,小胶质细胞和白细胞表)与神经元与神经元与神经元与神经元的相互作用进行了新模型。为了了解这些元素之间的完整相互作用,我们研究了一个空间均匀的简化模型,该模型允许确定关键参数的影响,例如降解速率在系统的渐近行为中和平衡的稳定性。我们观察到,通过滞后现象,炎症似乎是阿尔茨海默氏病的起始和进展的关键因素,这意味着白胞介素初始浓度的临界阈值在长期内决定该疾病是否持续。这些结果给出了有关可能用于减轻阿尔茨海默氏病进展的可能抗炎治疗的观点。我们还提出了数值模拟,可以观察模型中最初的炎症和浓度的影响。

We introduce and study a new model for the progression of Alzheimer's disease incorporating the interactions of A$β$-monomers, oligomers, microglial cells and interleukins with neurons through different mechanisms such as protein polymerization, inflammation processes and neural stress reactions. In order to understand the complete interactions between these elements, we study a spatially-homogeneous simplified model that allows to determine the effect of key parameters such as degradation rates in the asymptotic behavior of the system and the stability of equilibriums. We observe that inflammation appears to be a crucial factor in the initiation and progression of Alzheimer's disease through a phenomenon of hysteresis, which means that there exists a critical threshold of initial concentration of interleukins that determines if the disease persists or not in the long term. These results give perspectives on possible anti-inflammatory treatments that could be applied to mitigate the progression of Alzheimer's disease. We also present numerical simulations that allow to observe the effect of initial inflammation and concentration of monomers in our model.

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