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Modulation of ATP/ADP Concentration at the Endothelial Cell Surface by Flow: Effect of Cell Topography

机译:通过流动调节内皮细胞表面ATP / ADP的浓度:细胞形貌的影响

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摘要

Determining how flow affects the concentration of the adenine nucleotides ATP and ADP at the vascular endothelial cell (EC) surface is essential for understanding flow-induced mobilization of intracellular calcium. Previously, mathematical models were formulated to describe the ATP/ADP concentration at the EC surface; however, all previous models assumed the endothelium to be flat. In the present study we investigate the effect of surface undulations on ATP/ADP concentration at the EC surface. The results demonstrate that under certain geometric and flow conditions, the ATP + ADP concentration at the EC surface is considerably lower for a wavy cell surface than for a flat surface. Because ECs in regions of disturbed arterial flow are expected to have larger undulations than cells in non-disturbed flow zones, our findings suggest that ECs in regions of flow disturbance would exhibit lower ATP + ADP concentrations at their surfaces, which may lead to impaired calcium signaling. If validated experimentally, the present results may contribute to our understanding of endothelial cell dysfunction observed in regions of disturbed flow.
机译:确定流量如何影响血管内皮细胞(EC)表面腺嘌呤核苷酸ATP和ADP的浓度对于理解流量诱导的细胞内钙动员至关重要。以前,已经建立了数学模型来描述EC表面的ATP / ADP浓度。但是,所有以前的模型都假定内皮是扁平的。在本研究中,我们研究了表面起伏对EC表面ATP / ADP浓度的影响。结果表明,在一定的几何和流动条件下,波浪形细胞表面EC表面的ATP + ADP浓度要比平坦表面低得多。因为预计受干扰的动脉血流区域的ECs会比未受干扰的血流区域的细胞具有更大的起伏,所以我们的发现表明,受血流干扰区域的ECs在其表面将表现出较低的ATP + ADP浓度,这可能导致钙受损信号。如果通过实验验证,目前的结果可能有助于我们了解在血流不畅区域观察到的内皮细胞功能障碍。

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