首页> 外文期刊>International Journal of Nanomedicine >Doxorubicin-mediated radiosensitivity in multicellular spheroids from a lung cancer cell line is enhanced by composite micelle encapsulation
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Doxorubicin-mediated radiosensitivity in multicellular spheroids from a lung cancer cell line is enhanced by composite micelle encapsulation

机译:复合胶束封装增强了肺癌细胞系多细胞球体中阿霉素介导的放射敏感性

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Background: The purpose of this study is to evaluate the efficacy of composite doxorubicin-loaded micelles for enhancing doxorubicin radiosensitivity in multicellular spheroids from a non-small cell lung cancer cell line.Methods: A novel composite doxorubicin-loaded micelle consisting of polyethylene glycol-polycaprolactone/Pluronic P105 was developed, and carrier-mediated doxorubicin accumulation and release from multicellular spheroids was evaluated. We used confocal laser scanning microscopy and flow cytometry to study the accumulation and efflux of doxorubicin from A549 multicellular spheroids. Doxorubicin radiosensitization and the combined effects of irradiation and doxorubicin on cell migration and proliferation were compared for the different doxorubicin delivery systems.Results: Confocal laser scanning microscopy and quantitative flow cytometry studies both verified that, for equivalent doxorubicin concentrations, composite doxorubicin-loaded micelles significantly enhanced cellular doxorubicin accumulation and inhibited doxorubicin release. Colony-forming assays demonstrated that composite doxorubicin-loaded micelles are radiosensitive, as shown by significantly reduced survival of cells treated by radiation + composite micelles compared with those treated with radiation + free doxorubicin or radiation alone. The multicellular spheroid migration area and growth ability verified higher radiosensitivity for the composite micelles loaded with doxorubicin than for free doxorubicin.Conclusion: Our composite doxorubicin-loaded micelle was demonstrated to have radiosensitization. Doxorubicin loading in the composite micelles significantly increased its cellular uptake, improved drug retention, and enhanced its antitumor effect relative to free doxorubicin, thereby providing a novel approach for treatment of cancer.
机译:背景:本研究的目的是评估复合阿霉素胶束对增强非小细胞肺癌细胞系多细胞球体中阿霉素放射敏感性的功效。方法:由聚乙二醇-组成的新型复合阿霉素胶束开发了聚己内酯/ Pluronic P105,并评估了载体介导的阿霉素从多细胞球体中的积累和释放。我们使用共聚焦激光扫描显微镜和流式细胞仪研究了A549多细胞球体中阿霉素的积累和流出。比较了不同的阿霉素递送系统对阿霉素的放射增敏作用以及辐射和阿霉素对细胞迁移和增殖的综合影响。结果:共聚焦激光扫描显微镜和定量流式细胞术研究均证实,在相同的阿霉素浓度下,复合阿霉素负载的胶束显着增强细胞阿霉素的积累并抑制阿霉素的释放。集落形成试验表明,装载有阿霉素的复合胶束是放射敏感性的,这与用放射+游离阿霉素或单独的放射处理的细胞相比,经放射+复合胶束处理的细胞的存活率显着降低。多柔比星载药复合胶束的多细胞球体迁移面积和生长能力证明其放射敏感性高于游离阿霉素。结论:我们的载有阿霉素的复合胶束具有放射增敏作用。相对于游离阿霉素,复合胶束中阿霉素的负载量显着增加了其细胞摄取,改善了的药物保留并增强了其抗肿瘤作用,从而提供了一种新的癌症治疗方法。

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