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Phenotypic Pattern-Based Assay for Dynamically Monitoring Host Cellular Responses to Salmonella Infections

机译:基于表型模式的分析动态监测宿主细胞对沙门氏菌感染的反应

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摘要

The interaction between mammalian host cells and bacteria is a dynamic process, and the underlying pathologic mechanisms are poorly characterized. Limited information describing the host-bacterial interaction is based mainly on studies using label-based endpoint assays that detect changes in cell behavior at a given time point, yielding incomplete information. In this paper, a novel, label-free, real-time cell-detection system based on electronic impedance sensor technology was adapted to dynamically monitor the entire process of intestinal epithelial cells response to Salmonella infection. Changes in cell morphology and attachment were quantitatively and continuously recorded following infection. The resulting impedance-based time-dependent cell response profiles (TCRPs) were compared to standard assays and showed good correlation and sensitivity. Biochemical assays further suggested that TCRPs were correlated with cytoskeleton-associated morphological dynamics, which can be largely attenuated by inhibitions of actin and microtubule polymerization. Collectively, our data indicate that cell-electrode impedance measurements not only provide a novel, real-time, label-free method for investigating bacterial infection but also help advance our understanding of host responses in a more physiological and continuous manner that is beyond the scope of current endpoint assays.
机译:哺乳动物宿主细胞与细菌之间的相互作用是一个动态的过程,其潜在的病理机制尚不明确。描述宿主与细菌相互作用的有限信息主要基于使用基于标记的终点检测的研究,该检测可检测给定时间点的细胞行为变化,从而产生不完整的信息。在本文中,基于电子阻抗传感器技术的新型,无标签,实时细胞检测系统适用于动态监测肠道上皮细胞对沙门氏菌感染的反应全过程。感染后定量并连续记录细胞形态和附着的变化。将所得的基于阻抗的时间依赖性细胞反应谱(TCRP)与标准测定法进行比较,并显示出良好的相关性和敏感性。生化测定进一步表明,TCRPs与细胞骨架相关的形态动力学相关,其可以通过抑制肌动蛋白和微管聚合而大大减弱。总体而言,我们的数据表明,细胞电极阻抗测量不仅提供了一种新颖,实时,无标签的方法来调查细菌感染,而且还以超出范围的更生理和连续的方式帮助我们进一步了解宿主反应当前的终点分析。

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