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Surface Plasmon Resonance Monitoring of Cell Monolayer Integrity: Implication of Signaling Pathways Involved in Actin-Driven Morphological Remodeling

机译:细胞单层完整性的表面等离子体共振监测:信号通路参与肌动蛋白驱动的形态重塑。

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摘要

Morphological changes occurring in individual cells largely influence the physiological functions of various cell layers. The control of barrier function of epithelia and endothelia is a prime example of processes highly dependent on cellular morphology and cell layer integrity. Here, we applied the surface plasmon resonance (SPR) technique to the quantification of cellular activity of an epithelial cell monolayer stimulated by angiotensin II. The analysis of the SPR signal shows reproducible concentration-dependent biphasic responses after cell activation with angiotensin II. Phase-contrast and confocal microscopy imaging was performed to link the SPR signal to molecular and global morphological remodeling. The SPR signal was observed to be in relation with the rapid cell contraction and the subsequent cell spreading observed by phase-contrast microscopy. Additionally, the temporal redistribution of actin, observed by confocal microscopy after angiotensin II stimulation, was also found to be consistent with the SPR signal variation. The modulation of signaling pathways involved in actin-myosin driven cell contraction confirms the direct implication of actin structures in the SPR response. Additionally, we show that the intracellular calcium mobilization associated with angiotensin II stimulation did not produce any significant SPR signal variation. Altogether, our results demonstrate that SPR is a rapid label-free method to study cellular activity and molecular mechanisms implicated in the modulation of the integrity of a cell monolayer in relation to cytoskeleton remodeling with associated cell morphological changes.
机译:单个细胞中发生的形态变化在很大程度上影响各个细胞层的生理功能。上皮和内皮的屏障功能的控制是高度依赖于细胞形态和细胞层完整性的过程的主要例子。在这里,我们将表面等离子体共振(SPR)技术应用于量化血管紧张素II刺激的上皮细胞单层的细胞活性。对SPR信号的分析显示,在用血管紧张素II激活细胞后,可再现的浓度依赖性双相反应。进行了相衬和共聚焦显微镜成像,以将SPR信号与分子和整体形态重塑联系起来。通过相差显微镜观察到,SPR信号与细胞快速收缩和随后的细胞扩散有关。此外,还发现在血管紧张素II刺激后通过共聚焦显微镜观察到的肌动蛋白的时间再分布与SPR信号变化一致。肌动蛋白-肌球蛋白驱动的细胞收缩中涉及的信号通路的调节证实了肌动蛋白结构直接参与SPR反应。此外,我们显示与血管紧张素II刺激相关的细胞内钙动员不会产生任何明显的SPR信号变化。总之,我们的结果表明,SPR是一种快速的无标记方法,用于研究细胞活性和分子机制,这些分子机制涉及与细胞骨架重塑相关的细胞形态变化有关的细胞单层完整性的调节。

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