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Daunorubicin-Loaded DNA Origami Nanostructures Circumvent Drug Resistance Mechanisms in a Leukemia Model

机译:柔红霉素加载的DNA折纸纳米结构规避白血病模型中的耐药机制。

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摘要

Many cancers show primary or acquired drug resistance due to the overexpression of efflux pumps. A novel mechanism to circumvent this is to integrate drugs, such as anthracycline antibiotics, with nanoparticle delivery vehicles that can bypass intrinsic tumor drug-resistance mechanisms. DNA nanoparticles serve as an efficient binding platform for intercalating drugs (e.g. anthracyclines doxorubicin and daunorubicin, which are widely used to treat acute leukemias) and enable precise structure design and chemical modifications, for example for incorporating targeting capabilities. Here, we utilize DNA nanostructures to circumvent daunorubicin drug resistance at clinically relevant doses in a leukemia cell line model. We report the fabrication of a rod-like DNA origami drug carrier that can be controllably loaded with daunorubicin. We further directly verify that nanostructure-mediated daunorubicin delivery leads to increased drug entry and retention in cells relative to free daunorubicin at equal concentrations, which yields significantly enhanced drug efficacy. Our results indicate that DNA origami nanostructures can circumvent efflux pump-mediated drug resistance in leukemia cells at clinically relevant drug concentrations and provide a robust DNA nanostructure design that could be implemented in a wide range of cellular applications due to its remarkably fast self-assembly (~5 minutes) and excellent stability in cell culture conditions.
机译:由于外排泵的过表达,许多癌症显示出原发性或获得性耐药。解决这一问题的新机制是将药物(例如蒽环类抗生素)与可以绕过内在的肿瘤药物耐药机制的纳米颗粒运载工具整合在一起。 DNA纳米颗粒可作为嵌入药物(例如广泛用于治疗急性白血病的蒽环类抗生素阿霉素和柔红霉素)的有效结合平台,并能够进行精确的结构设计和化学修饰,例如用于整合靶向能力。在这里,我们利用DNA纳米结构在白血病细胞系模型中以临床相关剂量规避柔红霉素耐药性。我们报告了杆状DNA折纸药物载体的制造,该载体可以可控地装载柔红霉素。我们进一步直接证实,相对于相同浓度的游离柔红霉素,纳米结构介导的柔红霉素递送导致增加的药物进入和保留在细胞中,从而显着提高了药物功效。我们的结果表明,DNA折纸纳米结构可以在临床相关药物浓度下规避白血病细胞外排泵介导的耐药性,并且由于其自组装速度非常快,因此可以提供可在广泛的细胞应用中实现的强大的DNA纳米结构设计( 〜5分钟),并在细胞培养条件下具有出色的稳定性。

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