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The Mechanosensitive Ion Channel Piezo1 Significantly Mediates In Vitro Ultrasonic Stimulation of Neurons

机译:机械敏感的离子通道Piezo1在神经元的体外超声刺激中显着介导。

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摘要

Ultrasound brain stimulation is a promising modality for probing brain function and treating brain disease non-invasively and with high spatiotemporal resolution. However, the mechanism underlying its effects remains unclear. Here, we examine the role that the mouse piezo-type mechanosensitive ion channel component 1 (Piezo1) plays in mediating the effects of ultrasound in mouse primary cortical neurons and a neuronal cell line. We show that ultrasound alone could activate heterologous and endogenous Piezo1, initiating calcium influx and increased nuclear c-Fos expression in primary neurons but not when pre-treated with a Piezo1 inhibitor. We also found that ultrasound significantly increased the expression of the important proteins phospho-CaMKII, phospho-CREB, and c-Fos in a neuronal cell line, but Piezo1 knockdown significantly reduced this effect. Our findings demonstrate that the activity of mechanosensitive ion channels such as Piezo1 stimulated by ultrasound is an important contributor to its ability to stimulate cells .
机译:超声脑刺激是一种有前途的模式,用于探测脑功能和非侵入性地并以高时空分辨率治疗脑部疾病。但是,其作用的机制尚不清楚。在这里,我们检查了鼠标压电型机械敏感离子通道组件1(Piezo1)在介导超声在小鼠原代皮层神经元和神经元细胞系中的作用。我们显示,超声本身可以激活异源和内源性Piezo1,启动钙内流并增加原代神经元中的核c-Fos表达,但当用Piezo1抑制剂预处理时则不能。我们还发现,超声显着增加了神经元细胞系中重要蛋白质phospho-CaMKII,phospho-CREB和c-Fos的表达,但Piezo1的抑制显着降低了这种作用。我们的发现表明,超声刺激机械敏感离子通道(如Piezo1)的活动是其刺激细胞能力的重要贡献者。

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