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Design and evaluation of drug loaded microbubbles for ultrasound guided cancer therapy

机译:超声引导下癌症治疗的载药微泡的设计与评价

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摘要

Cancer is a genetic disease, caused by mutations in the genome of normal cells. Chemical and physical damage to the cellular genome can induce these mutations resulting in the transformation of a healthy cell into a tumor cell. Over the past years, researchers have acquired a basic understanding of tumor onset. Several important proto-oncogenes and proteins involved in angiogenesis have been identified, leading to the development and clinical use of several new anticancer agents.We succeeded in preparing microbubbles which are able to carry genetic (pDNA, siRNA) and chemotherapeutic (doxorubicin) drugs. We proved that these microbubbles can selectively deliver their genetic or chemotherapeutic drugs to melanoma cells upon ultrasound exposure. We also showed that the activity of currently available drug carriers (pDNA or siRNA lipoplexes and doxorubicin-liposomes) was significantly improved by microbubble coupling and ultrasound exposure. This enables us to obtain a space and time controlled drug delivery guided by ultrasound. The fact that ultrasound and microbubbles have already been approved for ultrasound contrast imaging and are currently used in daily clinic, makes it very plausible that the microbubble concept reported in this thesis may find its way as an advanced drug delivery system.
机译:癌症是一种遗传疾病,由正常细胞基因组的突变引起。对细胞基因组的化学和物理损伤可以诱导这些突变,从而导致健康细胞转化为肿瘤细胞。在过去的几年中,研究人员已经对肿瘤发作有了基本的了解。已经鉴定出几种与血管生成有关的重要原癌基因和蛋白质,从而导致了几种新型抗癌药的开发和临床应用。我们成功地制备了能够携带遗传(pDNA,siRNA)和化学治疗(阿霉素)药物的微泡。我们证明了这些微泡可以在超声暴露后选择性地将其遗传药物或化学治疗药物递送至黑素瘤细胞。我们还表明,通过微泡耦合和超声暴露,当前可用的药物载体(pDNA或siRNA脂质复合物和阿霉素-脂质体)的活性得到了显着改善。这使我们能够获得由超声引导的时空控制的药物输送。超声和微泡已经被批准用于超声对比成像,并且目前已用于日常临床,这一事实使得在本论文中报道的微泡概念可以作为先进的药物输送系统的方式变得很有道理。

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    Lentacker Ine;

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  • 年度 2009
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