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Novel fractionated ultrashort thermal exposures with MRI-guided focused ultrasound for treating tumors with thermosensitive drugs

机译:具有MRI引导的聚焦超声的新型分馏超声曝光,用于治疗热敏药物的肿瘤

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Thermosensitive liposomes represent an important paradigm in oncology, where hyperthermia-mediated release coupled with thermal bioeffects enhance the effectiveness of chemotherapy. Their widespread clinical adoption hinges upon performing controlled targeted hyperthermia, and a leading candidate to achieve this is temperature-based magnetic resonance imaging (MRI)–guided focused ultrasound (MRgFUS). However, the current approach to hyperthermia involves exposures lasting tens of minutes to hours, which is not possible to achieve in many circumstances because of blood vessel cooling and respiratory motion. Here, we investigate a novel approach to overcome these limitations: to use fractionated ultrashort (~30 s) thermal exposures (~41° to 45°C) to release doxorubicin from a thermosensitive liposome. This is first demonstrated in a dorsal chamber tumor model using two-photon microscopy. Thermal exposures were then conducted with a rabbit tumor model using a custom MRgFUS system incorporating temperature feedback control. Drug release was confirmed, and longitudinal experiments demonstrated profoundly enhanced tumor growth inhibition and survival.
机译:热敏脂质体代表肿瘤学中的重要范例,其中高温介导的释放与热生物效应相结合,增强了化疗的有效性。在进行受控靶向热疗后的广泛临床采用铰链,以及实现这一目标的主要候选者是基于温度的磁共振成像(MRI) - 指导聚焦超声(MRGFU)。然而,目前对高温的方法涉及持续数十分钟到数小时的暴露,这在许多情况下是由于血管冷却和呼吸运动在许多情况下都无法实现。在这里,我们研究了一种克服这些限制的新方法:使用分馏超薄(〜30秒至45℃)来从热敏脂质体中释放多柔比星。首先使用双光子显微镜检查在背腔肿瘤模型中进行。然后使用包含温度反馈控制的定制MRGFUS系统用兔肿瘤模型进行热曝光。确认药物释放,纵向实验表明肿瘤生长抑制和存活深刻。

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