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Chemo-thermal approach for efficient ultrasonic tumor treatment with phase change nano droplet

机译:相变纳米液滴高效超声肿瘤处理的化学热方法

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Phase-change nano-droplet (PCND) was found to promote chemically significant cavitation. PCNDs, which were droplets containing superheated perfluorocarbon and suspended in buffer solution with potassium iodide, were exposed to 1.1-MHz ultrasound with a sequence of periodically applied triggering pulses to generate microbubbles and following continuous-wave (CW) exposures. The chemical activity of ultrasound exposures, measured as the reaction yield of tri-iodide ions was strongly dependent on the interval of the pulses. We found that pulse intervals shorter than 0.03 s were needed to generate chemically significant cavitation. Further, we found that pre-exposure of ultrasound for chemical effects could be performed by using gel phantoms with thermal coagulation indicators, without sacrificing the effect of PCNDs to enhance temperature increase induced by exposure to high intensity focused ultrasound (HIFU). The results we obtained suggested the potential of ‘chemo-thermal’ therapy for tumors, which sequentially utilizes the chemical and thermal effect of PCNDs.
机译:发现相变纳米液滴(PCND)促进化学显着的空化。 PCNDS是含有过热的全氟化碳的液滴并用碘化钾悬浮在缓冲溶液中,用一系列周期性地施加的触发脉冲暴露于1.1MHz超声,以产生微泡并跟随连续波(CW)曝光。作为三碘离子的反应产率的超声曝光的化学活性强烈取决于脉冲的间隔。我们发现需要短于0.03s的脉冲间隔来产生化学显着的空化。此外,我们发现,通过使用热凝固指示剂的凝胶幻影,可以通过使用热凝固指示剂来进行超声波的预暴露,而不会牺牲PCNDS提高通过暴露于高强度聚焦超声(HIFU)诱导的温度增加的效果来进行。我们获得的结果表明肿瘤“化学热”治疗的潜力,顺序利用PCND的化学和热效应。

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