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Ultrasonic Stimulation of Single Bovine Aortic Endothelial Cells at 1GHz

机译:单牛主动脉内皮细胞超声波刺激1GHz

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Endothelial cells (ECs) in the body are constantly being exposed to mechanical forces such as shear stress and hydrostatic pressure due to blood flow, pressure, and deformation of vessel wall. Mechanosensitive ion channels and mechanosensors on the membrane of EC upon external mechanical stimulation transmit, signal and regulate cellular responses. However, it remains unclear how cells sense the mechanical stimuli through ion channels. A better understanding role of mechanosensitive ion channels in cellular system will go a long way towards shedding light on cellular mechanotransduction. Calcium ion (Ca~(2+)) is one of the most important biological signaling molecules controlling numerous cellular processes and functions. In this paper, we report on the results of a study in elucidating the effect of mechanical stimuli exerted on a single bovine aortic endothelial cell (BAEC) by ultrasound microbeam at 1 GHz on Ca~(2+) transport across cell membrane. These results clearly demonstrate that BAECs can be excited by mechanical stimulation by ultrasound at 1GHz, suggesting that ultrasound microbeam may be a valuable tool in studying cellular mechanotransduction.
机译:由于血流,压力和容器壁的变形,身体中的内皮细胞(ECS)恒定地暴露于机械力,例如由于血流,压力和变形而导致的剪切应力和静液压。机械敏感性离子通道和机械传感器在EC膜上,外部机械刺激发射,信号和调节细胞反应。然而,它仍然尚不清楚细胞通过离子通道感测机械刺激。在蜂窝系统中的机械敏感离子通道的更好理解作用将在蜂窝机械调节上缩小光线。钙离子(Ca〜(2+))是控制许多细胞工艺和功能的最重要的生物信号分子之一。在本文中,我们报告了通过在细胞膜上的1GHz上的1GHz上的1GHz上的超声微沟,在释放施加在单一牛主动脉内皮细胞(BAEC)上的机械刺激的影响的研究结果。这些结果清楚地表明,通过1GHz的超声波通过机械刺激可以激发BAEC,表明超声波微沟可以是研究蜂窝机械调节的有价值的工具。

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