动力蛋白
异源的
超声波
细胞生物学
转染
绿色荧光蛋白
钙显像
化学
生物物理学
神经科学
耳蜗
毛细胞
钙
生物
生物化学
基因
医学
放射科
有机化学
作者
Yao-Shen Huang,Ching‐Hsiang Fan,Ning Hsu,Nai-Hua Chiu,Chun-Yao Wu,Chu-Yuan Chang,Bing-Huan Wu,Shi-Rong Hong,Ya-Chu Chang,Anthony Yan‐Tang Wu,Vanessa Guo,Yueh-Chen Chiang,Wei-Chia Hsu,Linyi Chen,Charles P. Lai,Chih‐Kuang Yeh,Yu‐Chun Lin
出处
期刊:Nano Letters
[American Chemical Society]
日期:2019-12-29
卷期号:20 (2): 1089-1100
被引量:61
标识
DOI:10.1021/acs.nanolett.9b04373
摘要
Biomolecules that respond to different external stimuli enable the remote control of genetically modified cells. We report herein a sonogenetic approach that can manipulate target cell activities by focused ultrasound stimulation. This system requires an ultrasound-responsive protein derived from an engineered auditory-sensing protein prestin. Heterologous expression of mouse prestin containing two parallel amino acid substitutions, N7T and N308S, that frequently exist in prestins from echolocating species endowed transfected mammalian cells with the ability to sense ultrasound. An ultrasound pulse of low frequency and low pressure efficiently evoked cellular calcium responses after transfecting with prestin(N7T, N308S). Moreover, pulsed ultrasound can also noninvasively stimulate target neurons expressing prestin(N7T, N308S) in deep regions of mouse brains. Our study delineates how an engineered auditory-sensing protein can cause mammalian cells to sense ultrasound stimulation. Moreover, our sonogenetic tools will serve as new strategies for noninvasive therapy in deep tissues.
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