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Comparison of the synergistic effect of lipid nanobubbles and SonoVue microbubbles for high intensity focused ultrasound thermal ablation of tumors

机译:脂质纳米泡和SonoVue微泡对高强度聚焦超声热消融肿瘤协同作用的比较

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摘要

Microbubbles (MBs) are considered as an important enhancer for high intensity focused ultrasound (HIFU) treatment of benign or malignant tumors. Recently, different sizes of gas-filled bubbles have been investigated to improve the therapeutic efficiency of HIFU thermal ablation and reduce side effects associated with ultrasound power and irradiation time. However, nanobubbles (NBs) as an ultrasound contrast agent for synergistic therapy of HIFU thermal ablation remain controversial due to their small nano-size in diameter. In this study, phospholipid-shell and gas-core NBs with a narrow size range of 500–600 nm were developed. The synergistic effect of NBs for HIFU thermal ablation was carefully studied both in excised bovine livers and in breast tumor models of rabbits, and made a critical comparison with that of commercial SonoVue microbubbles (SonoVue MBs). In addition, the pathological changes of the targeted area in tumor tissue after HIFU ablation were further investigated. Phosphate buffer saline (PBS) was used as the control. Under the same HIFU parameters, the quantitative echo intensity of B-mode ultrasound image and the volume of coagulative necrosis in lipid NBs groups were significantly higher and larger than that in PBS groups, but could not be demonstrated a difference to that in SonoVue MBs groups both ex vivo and in vivo. These results showed that the synergistic effect of lipid NBs for HIFU thermal ablation were similar with that of SonoVue MBs, and further indicate that lipid NBs could potentially become an enhancer for HIFU thermal ablation of tumors.
机译:微泡(MBs)被认为是高强度聚焦超声(HIFU)治疗良性或恶性肿瘤的重要增强剂。最近,已经研究了不同大小的气泡,以提高HIFU热消融的治疗效率并减少与超声功率和照射时间相关的副作用。然而,由于纳米气泡的直径较小,作为超声造影剂用于HIFU热消融的协同治疗的纳米气泡(NBs)仍存在争议。在这项研究中,开发了具有500-600 nm窄尺寸范围的磷脂壳和气核NB。在已切除的牛肝和兔的乳腺肿瘤模型中,都仔细研究了NBs对HIFU热消融的协同作用,并与商用SonoVue微泡(SonoVue MBs)进行了重要比较。另外,进一步研究了HIFU消融后肿瘤组织中靶区域的病理变化。磷酸盐缓冲盐水(PBS)用作对照。在相同的HIFU参数下,脂质NBs组的B型超声图像定量回波强度和凝固性坏死体积显着高于和大于PBS组,但无法证明与SonoVue MBs组有所不同无论是体内还是体外。这些结果表明脂质NBs对HIFU热消融的协同作用与SonoVue MB相似,并且进一步表明脂质NBs可能成为肿瘤HIFU热消融的增强剂。

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