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Image-guided doxorubicin delivery with ultrasound and microbubbles in a mouse model of hepatocellular carcinoma using a diagnostic ultrasound system

机译:使用诊断超声系统使用诊断超声系统,在肝细胞癌小鼠模型中递送图像引导的多柔比星输送和微泡。

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Despite advances in chemotherapeutic drug development, hepatocellular carcinoma (HCC) is still the third leading cause of cancer-related deaths worldwide with a <; 30% 5-year survival rate. This poor prognosis can be attributed to the fact that HCC most commonly occurs in patients with pre-existing liver conditions, rendering many systemic options too aggressive. Patient survival rates could be improved by a more targeted approach. Ultrasound and microbubbles can provide a means for overcoming traditional barriers defining drug uptake. The goal of this work was to evaluate preclinical efficacy of image-guided drug delivery of doxorubicin with ultrasound and microbubbles. To this end, therapy settings were created on a Philips EpiQ and S5-1 phased array probe to provide focused sound for treatment. Sonovue was chosen as a clinically approved microbubble. A genetically engineered mouse model was bred and used as a physiologically relevant preclinical analog to human HCC. It was observed that ultrasound and microbubble therapy resulted in enhanced doxorubicin distribution as seen in fluorescent microscopy. Further, immediate vascular shutdown was observed in treated animals. The combination of these effects may be exploited to treat a challenging malignancy.
机译:尽管化学治疗药物发育进展,但肝细胞癌(HCC)仍然是全世界癌症相关死亡的第三个主要原因。 30%的5年生存率。这种预后差可归因于患有预先存在的肝脏条件的患者中最常发生的事实,使许多全身选择过于侵略性。通过更具针对性的方法可以提高患者生存率。超声波和微泡可以提供克服传统障碍的手段,限定药物吸收。这项工作的目标是评估与超声波和微泡的多柔比星的图像引导药物递送的临床前疗效。为此,在飞利浦EPIQ和S5-2相控阵探针上创建治疗设置,以提供聚焦的处理。 Sonovue被选为临床批准的微泡。繁殖遗传工程的小鼠模型并用作人体HCC的生理相关的临床前模数。观察到超声和微泡治疗导致荧光显微镜中所见的增强的多柔比蛋白分布。此外,在治疗的动物中观察到立即血管关闭。这些效果的组合可以利用来治疗挑战性恶性肿瘤。

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