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An integrated mechanostimulation system for probing architecture based calcium signaling in HUVEC cells

机译:用于探测HUVEC细胞中基于钙结构的钙信号传导的集成机械刺激模拟系统

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Dynamic signal conduction in endothelial networks plays an important role in endothelial function, and characteristics of the network architecture itself are theorized to play a role in this function. We have therefore developed an integrated mechanostimulation system to create spatiotemporal stimuli including geometric cues, fluidic shear, mechanical deformation, and tunable surface stiffness for probing intercellular communication in artificial networks of human umbilical vein endothelial (HUVEC) cells. The system enables detection of architecture dependent (e.g. linear, grid, and branching patterns), spatiotemporal calcium propagation characteristics such as speed, contact length, and repeated stimulation dependence due to mechanostimulation at the single cell level.
机译:内皮网络中的动态信号传导在内皮功能中起着重要作用,并且网络结构本身的特性在理论上可以在该功能中发挥作用。因此,我们开发了一种集成的机械刺激系统,以创建时空刺激,包括几何线索,流体剪切,机械变形和可调节的表面刚度,以探测人脐静脉内皮细胞(HUVEC)人工网络中的细胞间通讯。该系统能够检测与体系结构有关的(例如线性,网格和分支模式),时空钙传播特征(例如速度,接触长度)以及由于单细胞水平上的机械刺激而引起的重复刺激依赖性。

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