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Spatiotemporal Dynamics of Complement C5a Production within Bacterial Extracellular Polymeric Substance

机译:细菌细胞外聚合物中补体C5a产生的时空动力学

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摘要

Opsonization and anaphylatoxin production are early events in the innate response to bacterial pathogens. Opsonization alone is frequently not lethal and production of anaphy-latoxins, especially C5a, allows for recruitment of cellular defenses. Complement biochemistry is extensively studied and computational models have been reported previously. However, a critical feature of complement-mediated attack is its spatial dependence: diffusion of mediators into and away from a bacterium is central to understanding C5a generation. Spatial dependence is especially important in biofilms, where diffusion limitation is crucial to bacterial counterdefense. Here we develop a model of opsonization and C5a production in the presence of a common blood-borne pathogen, . Our results indicate that when complement attacks a single cell, diffusion into the extracellular polymeric substance (EPS) is complete within 10 ms and that production of C5a peaks over the next 15 min. When longer diffusion lengths (as in an EPS-rich biofilm) are incorporated, diffusion limitation appears such that the intensity and duration of C5a production is increased. However, the amount of C5a produced under several likely clinical scenarios where single cells or sparse biofilms are present is below the k of the C5a receptor suggesting that complement activation by a single bacterium may be difficult to detect when diffusion is taken into account.
机译:调理素和过敏毒素的产生是细菌病原体先天反应的早期事件。单独的调理作用通常不是致命的,而厌氧-拉丁美洲毒素,特别是C5a的产生,可以招募细胞防御。补体生物化学已被广泛研究,并且先前已经报道了计算模型。但是,补体介导的攻击的一个关键特征是其空间依赖性:介体扩散到细菌中和从细菌中扩散对理解C5a的产生至关重要。空间依赖性在生物膜中尤其重要,在生物膜中,扩散限制对细菌的防御至关重要。在这里,我们开发了在常见的血源性病原体存在下调理作用和C5a产生的模型。我们的结果表明,当补体攻击单个细胞时,扩散到细胞外聚合物(EPS)中的时间在10毫秒内完成,并且在接下来的15分钟内C5a的产量达到峰值。当掺入更长的扩散长度时(如在富含EPS的生物膜中),会出现扩散限制,从而增加C5a产生的强度和持续时间。然而,在存在单个细胞或稀疏生物膜的几种可能的临床情况下,产生的C5a量低于C5a受体的k,这表明当考虑扩散时,可能难以检测单个细菌的补体激活。

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