首页> 外文会议>2015 6th European Symposium on Ultrasonic Characterization of Bone >Mechanosensitive response of murine C2C12 myoblasts to focused Low-Intensity Pulsed Ultrasound (FLIPUS) stimulation
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Mechanosensitive response of murine C2C12 myoblasts to focused Low-Intensity Pulsed Ultrasound (FLIPUS) stimulation

机译:小鼠C2C12成肌细胞对聚焦低强度脉冲超声(FLIPUS)刺激的机械敏感性反应

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Quantitative Ultrasound (QUS) is a promising technique for bone tissue evaluation. Highly focused transducers, used for QUS, have also a capability to be applied for tissue-regenerative purposes and can provide geometrically controlled deposition of an accurate acoustic dose. This allows for overcoming of unwanted artifacts, i.e. standing waves, ring interferences, temperature elevations, cross-stimulation of adjacent wells, which often lead to irreproducible biological results, associated with existing Low-Intensity Pulsed Ultrasound (LIPUS) in-vitro set-ups. Focused LIPUS (FLIPUS) is a novel reliable tool, which is minimizes or avoids the aforementioned artifacts. In this study we evaluated mechanical response of murine C2C12 myoblastic cells, possessing osteogenic-lineage differentiation potential, to the well-controlled FLIPUS dose. The optimized acoustic dose (3.6 MHz, pulsed at 100 Hz with 28% duty cycle, corresponding to I = 29.4 ± 4.8 mW/cm) induced 1.5 fold increase (p<;0.05) in AP-1 promoter activity already after 5 minutes of FLIPUS exposure. The Sp1 binding was enhanced by about 20 % (p<;0.05) after 5 min FLIPUS stimulation and the trend persisted for 30 min (p<;0.01) and 1 hour (p<;0.01) stimulation times. Activation of TEAD-binding sequences to about 2 fold (p<;0.01) was observed after 5 min FLIPUS stimulation. The proliferation of the C2C12 cells was up-regulated in starving conditions on day 1 and 3 of daily short-term FLIPUS-treatments. These results imply the pro-proliferative nature of the selected FLIPUS-dose in C2C12s, with potential functional role of the described mechanosensitive transcription factors. The use of focused ultrasound for both visualization and therapeutic purposes may be applied in clinical settings to provide monitoring and support healing of damaged tissues.
机译:定量超声(QUS)是用于骨组织评估的有前途的技术。用于QUS的高度聚焦的换能器还具有用于组织再生目的的能力,并且可以提供精确声剂量的几何控制沉积。这样可以克服不需要的伪影,例如驻波,环干扰,温度升高,相邻孔的交叉刺激,这通常会导致无法再现的生物学结果,与现有的低强度脉冲超声(LIPUS)体外设置相关。 Focused LIPUS(FLIPUS)是一种新颖可靠的工具,可以最大限度地减少或避免上述伪像。在这项研究中,我们评估了具有良好成骨细胞分化潜能的鼠C2C12成肌细胞对良好控制的FLIPUS剂量的机械反应。优化的声学剂量(3.6 MHz,以28%占空比以100 Hz脉冲的频率,对应于I = 29.4±4.8 mW / cm)在5分钟的刺激后已经引起AP-1启动子活性增加1.5倍(p <; 0.05)。 FLIPUS曝光。在FLIPUS刺激5分钟后,Sp1结合增强了约20%(p <; 0.05),这种趋势持续了30分钟(p <; 0.01)和1小时(p <; 0.01)刺激时间。在FLIPUS刺激5分钟后,观察到TEAD结合序列的活化程度约为2倍(p <; 0.01)。在每日短期FLIPUS治疗的第1天和第3天,在饥饿的条件下,C2C12细胞的增殖上调。这些结果暗示了选定的FLIPUS-剂量在C2C12s中的增殖特性,并具有所描述的机械敏感转录因子的潜在功能。聚焦超声用于可视化和治疗目的的使用可以在临床环境中应用,以提供监测和支持受损组织的愈合。

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