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A Focused Low-Intensity Pulsed Ultrasound (FLIPUS) System for Cell Stimulation: Physical and Biological Proof of Principle

机译:用于细胞刺激的聚焦低强度脉冲超声(FLIPUS)系统:原理的物理和生物学证明

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Quantitative ultrasound (QUS) is a promising technique for bone tissue evaluation. Highly focused transducers used for QUS also have the capability to be applied for tissue-regenerative purposes and can provide spatially limited deposition of acoustic energy. We describe a focused low-intensity pulsed ultrasound (FLIPUS) system, which has been developed for the stimulation of cell monolayers in the defocused far field of the transducer through the bottom of the well plate. Tissue culture well plates, carrying the cells, were incubated in a special chamber, immersed in a temperature-controlled water tank. A stimulation frequency of 3.6 MHz provided an optimal sound transmission through the polystyrene well plate. The ultrasound was pulsed for 20 min daily at 100-Hz repetition frequency with 27.8% duty cycle. The calibrated output intensity corresponded to , which is comparable to the most frequently reported nominal output levels in LIPUS studies. No temperature change by the ultrasound exposure was observed in the well plate. The system was used to stimulate rat mesenchymal stem cells (rMSCs). The applied intensity had no apoptotic effect and enhanced the expression of osteogenic markers, i.e., osteopontin (OPN), collagen 1 (Col-1), the osteoblast-specific transcription factor—Runx-2 and E11 protein, an early osteocyte marker, in stimulated cells on day 5. The proposed FLIPUS setup opens new perspectives for the evaluation of the mechanistic effects of LIPUS.
机译:定量超声(QUS)是一种有前景的骨组织评估技术。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,并且可以提供空间有限的声能沉积。我们描述了一种聚焦的低强度脉冲超声(FLIPUS)系统,该系统已开发用于通过孔板底部刺激换能器散焦远场中的细胞单层。将携带细胞的组织培养孔板在一个特殊的培养箱中孵育,将其浸入温度可控的水箱中。 3.6 MHz的刺激频率通过聚苯乙烯孔板提供了最佳的声音传输。超声波以100 Hz重复频率每天脉冲20分钟,占空比为27.8%。校准后的输出强度对应于,与LIPUS研究中最常报告的名义输出水平相当。在孔板中未观察到由于超声暴露引起的温度变化。该系统用于刺激大鼠间充质干细胞(rMSCs)。施加的强度没有凋亡作用,并增强了成骨标记物,即骨桥蛋白(OPN),胶原蛋白1(Col-1),成骨细胞特异性转录因子Runx-2和E11蛋白(早期成骨细胞标记物)的表达。在第5天刺激细胞。拟议的FLIPUS装置为评估LIPUS的机械作用开辟了新的前景。

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