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Real-Time Measurement of Melanoma Cell-Mediated Human Brain Endothelial Barrier Disruption Using Electric Cell-Substrate Impedance Sensing Technology

机译:黑色素瘤细胞介导的人类脑血管内皮屏障破坏的实时测量使用电-细胞基质阻抗传感技术

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摘要

Electric cell-substrate impedance sensing (ECIS) is an impedance-based method for monitoring changes in cell behaviour in real-time. In this paper, we highlight the importance of ECIS in measuring the kinetics of human melanoma cell invasion across human brain endothelium. ECIS data can be mathematically modelled to assess which component of the endothelial paracellular and basolateral barriers is being affected and when. Our results reveal that a range of human melanoma cells can mediate disruption of human brain endothelium, primarily involving the paracellular route, as demonstrated by ECIS. The sensitivity of ECIS also reveals that the paracellular barrier weakens within 30–60 min of the melanoma cells being added to the apical face of the endothelial cells. Imaging reveals pronounced localisation of the melanoma cells at the paracellular junctions consistent with paracellular migration. Time-lapse imaging further reveals junctional opening and disruption of the endothelial monolayer by the invasive melanoma cells all within several hours. We suggest that the ability of ECIS to resolve changes to barrier integrity in real time, and to determine the route of migration, provides a powerful tool for future studies investigating the key molecules involved in the invasive process of cancer cells.
机译:电池基板阻抗感测(ECIS)是一种基于阻抗的方法,用于实时监控电池行为的变化。在本文中,我们强调了ECIS在测量人脑黑色素细胞侵袭人类脑内皮细胞动力学方面的重要性。可以对ECIS数据进行数学建模,以评估内皮细胞旁和基底外侧屏障的哪些成分受到影响以及何时受到影响。我们的结果表明,如ECIS所示,一系列人类黑素瘤细胞可介导人类脑内皮细胞的破坏,主要涉及细胞旁途径。 ECIS的敏感性还表明,在将黑色素瘤细胞添加至内皮细胞顶面后的30-60分钟内,细胞旁屏障减弱。成像显示黑色素瘤细胞在细胞旁连接处明显定位,与细胞旁迁移一致。延时成像进一步揭示了侵袭性黑色素瘤细胞在数小时内全部打开并破坏了内皮单层。我们认为,ECIS能够实时解决屏障完整性变化并确定迁移途径的能力,为将来的研究调查癌细胞侵袭过程中涉及的关键分子提供了强大的工具。

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