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Cell type-specific suppression of mechanosensitive genes by audible sound stimulation

机译:声音刺激对机械敏感基因的细胞类型特异性抑制

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摘要

Audible sound is a ubiquitous environmental factor in nature that transmits oscillatory compressional pressure through the substances. To investigate the property of the sound as a mechanical stimulus for cells, an experimental system was set up using 94.0 dB sound which transmits approximately 10 mPa pressure to the cultured cells. Based on research on mechanotransduction and ultrasound effects on cells, gene responses to the audible sound stimulation were analyzed by varying several sound parameters: frequency, wave form, composition, and exposure time. Real-time quantitative PCR analyses revealed a distinct suppressive effect for several mechanosensitive and ultrasound-sensitive genes that were triggered by sounds. The effect was clearly observed in a wave form- and pressure level-specific manner, rather than the frequency, and persisted for several hours. At least two mechanisms are likely to be involved in this sound response: transcriptional control and RNA degradation. ST2 stromal cells and C2C12 myoblasts exhibited a robust response, whereas NIH3T3 cells were partially and NB2a neuroblastoma cells were completely insensitive, suggesting a cell type-specific response to sound. These findings reveal a cell-level systematic response to audible sound and uncover novel relationships between life and sound.
机译:可听声音是自然界中普遍存在的环境因素,可通过物质传递振荡的压缩压力。为了研究声音作为细胞的机械刺激的性质,建立了使用94.0 dB声音的实验系统,该声音将大约10 mPa的压力传输到培养的细胞。基于对细胞的机械传导和超声作用的研究,通过改变多个声音参数(频率,波形,组成和暴露时间)来分析对可听声音刺激的基因反应。实时定量PCR分析显示,声音触发的几个机械敏感和超声敏感基因具有明显的抑制作用。可以以波形和压力级别特定的方式(而不是频率)清楚地观察到这种效果,并持续了几个小时。这种声音反应可能至少涉及两种机制:转录控制和RNA降解。 ST2基质细胞和C2C12成肌细胞表现出强健的反应,而NIH3T3细胞是部分,而NB2a神经母细胞瘤细胞则完全不敏感,表明细胞类型对声音的特异性反应。这些发现揭示了细胞级对可听声音的系统反应,并揭示了生命与声音之间的新颖关系。

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