机械敏感通道
压电1
离子通道
细胞生物学
超声波传感器
刺激
机械转化
生物物理学
频道(广播)
体外
化学
神经科学
生物
计算机科学
声学
物理
电信
生物化学
受体
作者
Zhihai Qiu,Jinghui Guo,Shashwati Kala,Jiejun Zhu,Quanxiang Xian,Weibao Qiu,Guofeng Li,Ting Zhu,Long Meng,Rui Zhang,Hsiao Chang Chan,Hairong Zheng,Lei Sun
出处
期刊:iScience
[Cell Press]
日期:2019-10-24
卷期号:21: 448-457
被引量:200
标识
DOI:10.1016/j.isci.2019.10.037
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 in vitro 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 in vitro.
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