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首页> 外文期刊>Journal of vascular research >Advanced Methods for the Investigation of Cell Contact Dynamics in Endothelial Cells Using Florescence-Based Live Cell Imaging
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Advanced Methods for the Investigation of Cell Contact Dynamics in Endothelial Cells Using Florescence-Based Live Cell Imaging

机译:使用基于荧光性的活细胞成像的内皮细胞细胞接触动力学研究的先进方法

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摘要

Endothelial cells of the vascular system are dynamic cells whose molecular adaptability is decisive for the adjustment of homeostasis and organ perfusion. Advanced microscopic techniques, automation processing, and image analysis software was shown to improve the understanding of vascular biology. In this work, we describe advanced methods that allow investigating the dynamics of endothelial cell contacts. The development of viral vectors has contributed significantly to the genetic manipulation of endothelial cells. We used the Gibson assembly as a quick and cheap cloning system for introducing sequences into the lentiviral-based pFUGW vector. Furthermore, classical fluorescence tags such as mCherry and EGFP were compared with self-labeling tags such as Halo and SNAP for their suitability to study junction dynamics in cultured endothelium, and found the self-labeling tags as useful tools. Using such combinations, we found maintained cell junction integrity during shear stress-induced junction remodeling using VE-cadherin-EGFP. Re-modeling was accompanied by VE-cadherin plaque formation, indicating that this process is mediated by the formation of the actin-driven junction-associated intermittent lamellipodia, JAIL. The combined methods including the Gibson assembly, lentiviral mediated gene transfer, spinning disk-based live cell imaging, and software for quantification allow analyses of the endothelial cell junction dynamics under static and under shear stress conditions. (C) 2018 S. Karger AG, Basel.
机译:血管系统的内皮细胞是动态细胞,其分子适应性对于调整稳态和器官灌注是决定性的。先进的显微镜技术,自动化处理和图像分析软件已显示提高对血管生物学的理解。在这项工作中,我们描述了允许研究内皮细胞触点的动态的先进方法。病毒载体的发展对内皮细胞的遗传操作有显着贡献。我们将Gibson组装用作快速和廉价的克隆系统,用于将序列引入基于慢病毒的PFugw向量。此外,将诸如MCHerry和EGFP的经典荧光标签与自标记标签,例如卤素,并捕捉它们在培养内皮中研究结动力学的适用性,并发现自标记标签作为有用的工具。使用这种组合,我们发现使用Ve-Cadherin-EGFP剪切应力诱导的结来重塑期间保持细胞结直接性。重新建模伴随着Ve-Cadherin斑块的形成,表明该过程是通过形成肌动蛋白驱动的结合相关的间歇性Lamellipodia,监狱的介导的。包括Gibson组件,慢病毒介导的基因转移,纺丝基的活细胞成像的组合方法,以及用于定量软件,允许在静态和剪切应力条件下分析内皮细胞结动力学。 (c)2018年S. Karger AG,巴塞尔。

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