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Measurements of endothelial cell-to-cell and cell-to-substrate gaps and micromechanical properties of endothelial cells during monocyte adhesion

机译:单核细胞粘附过程中内皮细胞间和细胞间基质间隙的测量以及内皮细胞的微机械性能

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The interaction between monocytes and endothelial cells is considered to play a major role in the early stage of atherosclerosis, and the involved endothelial cell micromechanics may provide us with important aspects of atherogenesis. In the present study, we evaluated (ⅰ) the endothelial cell-to-cell and cell-to-substrate gaps with the electric cell-substrate impedance sensing system, which can detect the nanometer order changes of cell-to-cell and cell-to-substrate distances separately, and (ⅱ) the endothelial cell micro-mechanical properties with an atomic force microscope after application of monocytes to endothelial cells. Application of mono-cytic THP-1 cells to IL-1β-stimulated human umbilical vein endothelial cells immediately decreased the electrical resistance of the endothelial cell-to-substrate (increase of the cell-to-substrate gap), whereas the endothelial cell-to-cell resistance (cell-to-cell gap) did not change. The elastic modulus of the endothelial cells decreased after 2-h monocyte application, indicating an increase of endothelial cell deformability. In conclusion, the interaction of the monocytes to the endothelial cells reduced the adhesiveness to the substrate and increased the deformability of endothelial cells. These changes in the adhesiveness and the deformability may facilitate migration of monocytes, a key process of atherogenesis in the later stage.
机译:单核细胞和内皮细胞之间的相互作用被认为在动脉粥样硬化的早期起主要作用,并且所涉及的内皮细胞微力学可能为我们提供重要的动脉粥样硬化方面。在本研究中,我们使用电-细胞-基底阻抗感测系统评估(ⅰ)内皮细胞与细胞和细胞-基底的间隙,该间隙可以检测细胞与细胞和细胞的纳米级变化。单核细胞施加至内皮细胞的距离;以及(ⅱ)用原子力显微镜观察内皮细胞的微机械性能。将单细胞THP-1细胞应用于IL-1β刺激的人脐静脉内皮细胞会立即降低内皮细胞与底物之间的电阻(增加细胞与底物之间的间隙),而内皮细胞单元间电阻(单元间间隙)没有变化。施加2小时单核细胞后,内皮细胞的弹性模量下降,表明内皮细胞的可变形性增加。总之,单核细胞与内皮细胞的相互作用降低了对基底的粘附性并增加了内皮细胞的可变形性。粘附性和可变形性的这些变化可促进单核细胞的迁移,这是后期动脉粥样硬化的关键过程。

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