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Experimental investigation of effect of ultrasonic duty cycle on generation of reactive oxygen species for highly efficient sonodynamic treatment

机译:超声占用循环对高效超声动力学治疗产生反应性氧物种影响的实验研究

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Sonodynamic treatment (SDT) is a non-invasive treatment of cancer, combining ultrasound, reactive oxygen species (ROS), and sonosensitizer. When cavitation bubbles generated by ultrasound oscillate and collapse, ROS are generated due to the high temperature and high pressure inside the bubble. By generating cavitation bubbles in a target tissue, it can be treated by the cytotoxicity of ROS, which can be further enhanced by a sonosensitizer. In SDT, the small treatment region by a single shot of HIFU results in a long treatment time, which needs to be reduced by improving the efficiency of ROS generation. ROS can be visualized by the sonochemiluminescence of luminol. In this study, a polyacrylamide gel soaked with luminol solution is used as a target of ultrasonic exposure. The effect of the duty cycle of HIFU exposure on ROS generation was investigated by capturing sonochemiluminescent light emission, and high-speed photography of cavitation bubbles. (C) 2020 The Japan Society of Applied Physics
机译:讽刺性治疗(SDT)是癌症的非侵入性治疗,结合超声波,反应性氧(ROS)和超声溶剂。当通过超声振荡和塌陷产生的空化泡沫,由于气泡内的高温和高压而产生ROS。通过在靶组织中产生空化气泡,可以通过ROS的细胞毒性治疗,其可以通过超声胶酶进一步增强。在SDT中,通过单次HIFU的小治疗区域导致长的治疗时间,需要通过提高ROS生成的效率来降低。 ROS可以被鲁米诺的SonoChemil发光可视化。在该研究中,用鲁米诺溶液浸泡的聚丙烯酰胺凝胶用作超声波暴露的靶标。通过捕获SonoChemil发光光发射和空化泡沫的高速摄影,研究了HIFU暴露对ROS生成的占空比对ROS生成的影响。 (c)2020日本应用物理学会

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