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Evaluation of doxorubicin-containing microbubbles for ultrasound-triggered delivery

机译:评估含有多柔比星的微泡,用于超声触发的输送

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Doxorubicin (Dox) is a potent chemotherapeutic compound whose severe side effects limit its application. Microbubble-assisted ultrasound has become a promising strategy for non-invasive local drug delivery to increase the drug concentration locally and to reduce systemic side effects. The aim of this study is to evaluate the effectiveness of administration of Dox-liposomes loaded on microbubbles (Dox-LPS MBs) combined with ultrasound in human U-87MG glioblastoma cells. Experiments were carried out with free Dox or Dox-LPS MBs (final concentration of Dox, 3 μg/mL) on a cell suspension of U-87MG cells. Ultrasound waves were transmitted at 1 MHz frequency with a pulse repetition period of 100 μs, 40 cycles per pulse and for 30s. Cell viability was evaluated by Trypan blue assay 24h and 48h later. Using Dox alone, the cell viability was 63±3% and 26±2% at 24h and 48h later, respectively. The combination of ultrasound at 600 kPa and Dox-LPS MBs induced a 2.5-fold decrease of cell viability compared to the incubation of Dox-LPS MBs alone at 24h and 48h after treatment, respectively. At 24h, this combination was 3 times more efficient than the doxorubicin treatment alone. The conclusions drawn from this in-vitro study show the potential of this strategy for a controlled, efficient, and safe drug delivery. Indeed, the encapsulation of doxorubicin into liposomes and the ultrasound-triggered delivery would allow a reduction of therapeutic dose and side effects of doxorubicin.
机译:Doxorubicin(Dox)是一种有效的化学治疗复合化合物,其严重的副作用限制了其应用。微泡辅助超声已成为非侵入性局部药物递送的有希望的策略,以增加本地药物浓度并降低全身副作用。本研究的目的是评估负载在微泡(DOX-LPS MBS)上的DOX-脂质体的施用的有效性与人U-87MG胶质母细胞瘤细胞中的超声组合。在U-87mg细胞的细胞悬浮液上使用自由DOX或DOX-LPS MBS(DOX,3μg/ mL的最终浓度)进行实验。超声波以1 MHz频率发送,脉冲重复周期为100μs,每次脉冲40个循环和30秒。通过Trypan Blue Massay 24h和48h评估细胞活力。单独使用DOX,在24h和48h分别在24h和48h的细胞活力分别为63±3%和26±2%。与在处理后24h和48h的24h和48h中,相比,超声波在600kPa和Dox-LPS MBS的组合诱导细胞活力的2.5倍降低。在24小时时,这种组合比单独的多柔比星治疗更有效3倍。从这种体外研究中得出的结论表明了这种策略的潜力,用于控制,有效和安全的药物递送。实际上,将多柔比星的包封成脂质体和超声触发的递送将允许减少治疗剂量和多柔比星的副作用。

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