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Dynamics of Salmonella infection of macrophages at the single cell level

机译:单细胞水平沙门氏菌感染巨噬细胞的动力学

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摘要

Salmonella enterica causes a range of diseases. Salmonellae are intracellular parasites of macrophages, and the control of bacteria within these cells is critical to surviving an infection. The dynamics of the bacteria invading, surviving, proliferating in and killing macrophages are central to disease pathogenesis. Fundamentally important parameters, however, such as the cellular infection rate, have not previously been calculated. We used two independent approaches to calculate the macrophage infection rate: mathematical modelling of Salmonella infection experiments, and analysis of real-time video microscopy of infection events. Cells repeatedly encounter salmonellae, with the bacteria often remain associated with the macrophage for more than ten seconds. Once Salmonella encounters a macrophage, the probability of that bacterium infecting the cell is remarkably low: less than 5%. The macrophage population is heterogeneous in terms of its susceptibility to the first infection event. Once infected, a macrophage can undergo further infection events, but these reinfection events occur at a lower rate than that of the primary infection.
机译:肠沙门氏菌引起多种疾病。沙门氏菌是巨噬细胞的细胞内寄生虫,控制这些细胞内的细菌对于幸存感染至关重要。细菌侵袭,存活,增殖并杀死巨噬细胞的动力学是疾病发病机理的关键。但是,以前尚未计算出最重要的参数,例如细胞感染率。我们使用两种独立的方法来计算巨噬细胞的感染率:沙门氏菌感染实验的数学建模以及感染事件的实时视频显微镜分析。细胞反复遇到沙门氏菌,细菌经常与巨噬细胞结合超过十秒钟。沙门氏菌一旦遇到巨噬细胞,细菌感染细胞的可能性就会非常低:小于5%。就其对首次感染事件的敏感性而言,巨噬细胞群是异质的。一旦被感染,巨噬细胞会经历进一步的感染事件,但是这些再感染事件的发生率低于原发感染的发生率。

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