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A microfluidic device with spatiotemporal wall shear stress and ATP signals to investigate the intracellular calcium dynamics in vascular endothelial cells

机译:具有时空壁剪切应力和ATP信号的微流体装置,以研究血管内皮细胞中的细胞内钙动力学

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摘要

Intracellular calcium dynamics plays an important role in the regulation of vascular endothelial cellular functions. In order to probe the intracellular calcium dynamic response under synergistic effect of wall shear stress (WSS) and adenosine triphosphate (ATP) signals, a novel microfluidic device, which provides the adherent vascular endothelial cells (VECs) on the bottom of microchannel with WSS signal alone, ATP signal alone, and different combinations of WSS and ATP signals, is proposed based upon the principles of fluid mechanics and mass transfer. The spatiotemporal profiles of extracellular ATP signals from numerical simulation and experiment studies validate the implementation of our design. The intracellular calcium dynamics of VECs in response to either WSS signal or ATP signal alone, and different combinations of WSS and ATP signals have been investigated. It is found that the synergistic effect of the WSS and ATP signals plays a more significant role in the signal transduction of VECs rather than that from either WSS signal or ATP signal alone. In particular, under the combined stimuli of WSS and ATP signals with different amplitudes and frequencies, the amplitudes and frequencies of the intracellular Ca2+ dynamic signals are observed to be closely related to the amplitudes and frequencies of WSS or ATP signals.
机译:细胞内钙动力学在调节血管内皮细胞功能中起重要作用。为了在壁剪切应力(WSS)和腺苷三磷酸(ATP)信号的协同作用下探测细胞内钙动力响应,一种新型微流体装置,其在微通道底部提供粘附的血管内皮细胞(VECs)与WSS信号仅基于流体力学和传质的原理提出单独的ATP信号和WSS和ATP信号的不同组合。来自数值模拟和实验研究的细胞外ATP信号的时空谱验证了我们设计的实现。研究了VECS的细胞内钙动态,响应于WSS信号或ATP信号,以及WSS和ATP信号的不同组合。结果发现,WSS和ATP信号的协同效果在VEC的信号转换中扮演更大的作用,而不是单独地从WSS信号或ATP信号中发挥更大的作用。特别地,在具有不同幅度和频率的WSS和ATP信号的组合刺激下,观察到细胞内CA2 +动态信号的幅度和频率与WSS或ATP信号的幅度和频率密切相关。

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