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Agent-Based Modeling Approach of Immune Defense Against Spores of Opportunistic Human Pathogenic Fungi

机译:基于Agent的机会性人类病原真菌对孢子免疫防御的建模方法

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摘要

Opportunistic human pathogenic fungi like the ubiquitous fungus Aspergillus fumigatus are a major threat to immunocompromised patients. An impaired immune system renders the body vulnerable to invasive mycoses that often lead to the death of the patient. While the number of immunocompromised patients is rising with medical progress, the process, and dynamics of defense against invaded and ready to germinate fungal conidia are still insufficiently understood. Besides macrophages, neutrophil granulocytes form an important line of defense in that they clear conidia. Live imaging shows the interaction of those phagocytes and conidia as a dynamic process of touching, dragging, and phagocytosis. To unravel strategies of phagocytes on the hunt for conidia an agent-based modeling approach is used, implemented in NetLogo. Different modes of movement of phagocytes are tested regarding their clearing efficiency: random walk, short-term persistence in their recent direction, chemotaxis of chemokines excreted by conidia, and communication between phagocytes. While the short-term persistence hunting strategy turned out to be superior to the simple random walk, following a gradient of chemokines released by conidial agents is even better. The advantage of communication between neutrophilic agents showed a strong dependency on the spatial scale of the focused area and the distribution of the pathogens.
机译:机会性人类致病真菌,如无处不在的真菌烟曲霉,是免疫功能低下患者的主要威胁。免疫系统受损使身体容易受到侵袭性真菌病的侵害,而真菌病常常导致患者死亡。尽管随着医学进步,免疫功能低下的患者数量正在增加,但是对于入侵和准备发芽的真菌分生孢子的过程和防御动力学的了解仍然不够。除巨噬细胞外,嗜中性粒细胞还可以清除分生孢子,从而形成了重要的防御线。实时成像显示,吞噬细胞和分生孢子的相互作用是触摸,拖动和吞噬作用的动态过程。为了在寻找分生孢子时解散吞噬细胞的策略,使用了基于代理的建模方法,该方法在NetLogo中实现。对吞噬细胞的不同移动方式进行了清除效率测试:随机行走,近期方向的短期持续性,分生孢子分泌的趋化因子的趋化性以及吞噬细胞之间的通讯。虽然事实证明,短期持久性狩猎策略优于简单的随机行走,但分生孢子剂释放的趋化因子梯度要好得多。中性粒细胞之间通讯的优势显示出对聚焦区域的空间尺度和病原体分布的强烈依赖性。

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