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Study on mechanism of cell damage caused by microbubbles exposed to ultrasound

机译:微泡暴露于超声引起的细胞损伤机制研究

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To elucidate the mechanisms of cell damage caused by microbubbles exposed to ultrasound, two series of experiments were carried out. In one series of experiments, microbubbles and cells were exposed to 1-MHz pulsed ultrasound and observed using a high-speed camera. In another series of experiments, endothelial cells were exposed to ultrasound with and without microbubbles, and the viabilities of the cells were evaluated by fluorescent staining. In the high-speed images, generation of a small stream of the surrounding liquid caused by nonuniform contraction of a microbubble and deformation of a cell beside the bubble were observed. In the cell viability test, the percentage of damaged cells in the presence of microbubbles that had been exposed to ultrasound was significantly higher than that of cells without microbubbles that had been exposed to ultrasound. These results indicated that bubbles exposed to ultrasound causes mechanical stress to act on cells and that this mechanical stress may cause cell injury.
机译:为了阐明暴露于超声波引起的细胞损伤机制,进行了两种实验。在一系列实验中,微泡和电池暴露于1-MHz脉冲超声并使用高速相机观察。在另一系列实验中,内皮细胞暴露于具有微泡的超声波,并且通过荧光染色评估细胞的稳定性。在高速图像中,观察到由微泡的非均匀性收缩引起的周围液体的一小流和泡沫旁边的细胞的变形。在细胞活力测试中,已经暴露于超声波的微泡存在的受损细胞的百分比显着高于未暴露于超声波的微泡的细胞的细胞。这些结果表明,暴露于超声的气泡导致机械应力作用于细胞,并且这种机械应力可能导致细胞损伤。

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