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A mathematical model of murine macrophage infected with Leishmania sp

机译:用Leishmania sp感染鼠巨噬细胞的数学模型

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Infection by Leishmania can cause diseases ranging from self-healing cutaneous to visceral dissemination that can lead to death if untreated. In order to explore the early phase of the infection and the role of macrophages, we implement a system of differential equations involving the major players in the innate immune response to leishmaniasis (i.e., parasites in the intracellular and free form, infected and uninfected macrophages, and NO/ROS). The model was adjusted and validated using data from C57BL/6, KO and SCID mice published in the literature. The key findings were the surprisingly more active macrophages in the mice knockouts for IL-12 and IFN-g. This result can be interpreted as an indication of an M2b polarization of the macrophages in these mice. Sensitivity Analysis shows that NO/ROS secretion rate is more important to Leishmania control then the mechanisms of killing intracellular parasites. This model is a useful tool for comprehending the infection and treatments.
机译:利什曼尼亚的感染可能导致疾病从自我修复的皮肤到内脏传播,如果未经治疗,可能导致死亡。为了探讨感染的早期阶段和巨噬细胞的作用,我们实施了一个涉及主要球员的微分方程系统,该系统在Leishmaniaisis(即细胞内和自由形式的寄生虫,感染和未感染的巨噬细胞中,和没有/ ros)。使用文献中发布的C57BL / 6,KO和SCID小鼠的数据进行调整和验证该模型。关键发现是IL-12和IFN-G的小鼠敲除的令人惊讶的更活跃的巨噬细胞。该结果可以解释为这些小鼠中巨噬细胞的M2B偏振的指示。敏感性分析表明,没有/ ROS分泌率对Leishmania控制更重要,然后是杀死细胞内寄生虫的机制。该模型是一种理解感染和治疗的有用工具。

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