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Hollow superparamagnetic iron oxide nanoshells as a hydrophobic anticancer drug carrier: intracelluar pH-dependent drug release and enhanced cytotoxicity

机译:中空超顺磁性氧化铁nanoshells一种疏水性抗癌药物载体:intracelluar pH-dependent药物释放和增强细胞毒性

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摘要

With curcumin and doxorubicin (DOX) base as model drugs, intracellular delivery of hydrophobic anticancer drugs by hollow structured superparamagnetic iron oxide (SPIO) nanoshells (hydrodynamic diameter: 191.9 ± 2.6 nm) was studied in glioblastoma U-87 MG cells. SPIO nanoshell-based encapsulation provided a stable aqueous dispersion of the curcumin. After the SPIO nanoshells were internalized by U-87 MG cells, they localized at the acidic compartments of endosomes and lysosomes. In endosome/lysosome-mimicking buffers with a pH of 4.5-5.5, pH-dependent drug release was observed from curcumin or DOX loaded SPIO nanoshells (curcumin/SPIO or DOX/SPIO). Compared with the free drug, the intracellular curcumin content delivered via curcumin/SPIO was 30 fold higher. Increased intracellular drug content for DOX base delivered via DOX/SPIO was also confirmed, along with a fast intracellular DOX release that was attributed to its protonation in the acidic environment. DOX/SPIO enhanced caspase-3 activity by twofold compared with free DOX base. The concentration that induced 50% cytotoxic effect (CC_(50)) was 0.05 ± 0.03 ug ml"1 for DOX/SPIO, while it was 0.13 ± 0.02 μg ml~(-1) for free DOX base. These results suggested SPIO nanoshells might be a promising intracellular carrier for hydrophobic anticancer drugs.
机译:姜黄素和阿霉素(阿霉素)基础模型药物、细胞内的疏水性抗癌药物的空心结构超顺磁性氧化铁(SPIO) nanoshells(水动力直径:191.9±2.6海里)研究了胶质母细胞瘤细胞u - 87毫克。nanoshell-based封装提供了一个稳定的姜黄素的水分散体。SPIO nanoshells内化了u - 87毫克细胞,他们在酸性本地化的隔间核内体和溶酶体。内体/ lysosome-mimicking缓冲区的pH值4.5 - -5.5, pH-dependent观察药物释放从姜黄素或阿霉素加载SPIO nanoshells(姜黄素/ SPIO或阿霉素/ SPIO)。免费药物,细胞内的姜黄素含量通过姜黄素/ SPIO高出30倍。增加细胞内阿霉素药物的内容基础通过强力霉素/ SPIO也证实,那是与一个快速释放细胞内阿霉素归因于其在酸性的质子化作用环境。通过双重的自由阿霉素与基础。50%浓度诱导细胞毒性效应(CC_(50))为0.05±0.03 ug毫升“1对阿霉素/ SPIO,虽然是0.13±0.02μg毫升~免费阿霉素(1)基地。可能是一个有前途的细胞载体疏水性抗癌药物。

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