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首页> 外文期刊>Micromachines >A Y-Shaped Microfluidic Device to Study the Combined Effect of Wall Shear Stress and ATP Signals on Intracellular Calcium Dynamics in Vascular Endothelial Cells
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A Y-Shaped Microfluidic Device to Study the Combined Effect of Wall Shear Stress and ATP Signals on Intracellular Calcium Dynamics in Vascular Endothelial Cells

机译:Y型微流体装置,用于研究壁剪切应力和ATP信号对血管内皮细胞内钙动态的联合影响

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The intracellular calcium dynamics in vascular endothelial cells (VECs) in response to wall shear stress (WSS) and/or adenosine triphosphate (ATP) have been commonly regarded as an important factor in regulating VEC function and behavior including proliferation, migration and apoptosis. However, the effects of time-varying ATP signals have been usually neglected in the past investigations in the field of VEC mechanobiology. In order to investigate the combined effects of WSS and dynamic ATP signals on the intracellular calcium dynamic in VECs, a Y-shaped microfluidic device, which can provide the cultured cells on the bottom of its mixing micro-channel with stimuli of WSS signal alone and different combinations of WSS and ATP signals in one single micro-channel, is proposed. Both numerical simulation and experimental studies verify the feasibility of its application. Cellular experimental results also suggest that a combination of WSS and ATP signals rather than a WSS signal alone might play a more significant role in VEC Ca 2+ signal transduction induced by blood flow.
机译:血管内皮细胞(VEC)响应壁切应力(WSS)和/或三磷酸腺苷(ATP)的细胞内钙动力学通常被认为是调节VEC功能和行为(包括增殖,迁移和凋亡)的重要因素。然而,在过去的VEC机械生物学领域的研究中,时变ATP信号的作用通常被忽略。为了研究WSS和动态ATP信号对VEC中细胞内钙动态的组合影响,使用了一种Y形微流控设备,该设备可以在其混合微通道底部的培养细胞中单独提供WSS信号的刺激。提出了在单个微通道中WSS和ATP信号的不同组合。数值模拟和实验研究均证明了其应用的可行性。细胞实验结果还表明,WSS和ATP信号的组合而不是单独的WSS信号可能在血流诱导的VEC Ca 2+信号转导中起更重要的作用。

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