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Mechanotransduction of Ultrasound is Frequency Dependent Below the Cavitation Threshold

机译:超声的机械传导在空化阈值以下与频率有关

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摘要

This study provides evidence that low-intensity ultrasound directly affects nuclear processes, and the magnitude of the effect varies with frequency. In particular, we show that the transcriptional induction of first load-inducible genes, which is independent of new protein synthesis, is frequency dependent. Bovine chondrocytes were exposed to low-intensity below the cavitational threshold) ultrasound at 2,5 and 8 MHz. Ultrasound elevated the expression of early response genes c-Fos, c-Jun and c-Myc, maximized at 5 MHz. The phosphorylated ERK inhibitor PD98059 abrogated any increase in c-series gene expression, suggesting that signaling occurs via the MAPPK/ERK pathway. However, phosphorylated ERK levels did not change with ultrasound frequency, indicating that processes downstream of ERK phosphorylation (such as nuclear transport and chromatin reorganization) respond to ultrasound with frequency dependence. A quantitative, biphasic mathematical model based on Biot theory predicted that cytoplasmic and nuclear stress is maximized at 5.2 ± 0.8 MHz for a chondrocyte, confirming experimental measurements.
机译:这项研究提供了证据,表明低强度超声直接影响核过程,并且影响的幅度随频率而变化。特别是,我们显示了第一个负载诱导型基因的转录诱导是频率依赖性的,而该诱导不依赖于新蛋白质的合成。牛软骨细胞在2,5和8 MHz处暴露于低于空化阈值的低强度超声。超声提高了早期反应基因c-Fos,c-Jun和c-Myc的表达,在5 MHz时最大。磷酸化的ERK抑制剂PD98059消除了c系列基因表达的任何增加,表明信号通过MAPPK / ERK途径发生。但是,磷酸化的ERK水平并未随超声频率变化,这表明ERK磷酸化的下游过程(例如核转运和染色质重组)对超声具有频率依赖性。基于Biot理论的定量,双相数学模型预测,软骨细胞的胞质和核应力在5.2±0.8 MHz时最大,证实了实验测量结果。

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