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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Rattle-type hollow CaWO_4:Tb~(3+)@SiO_2 nanocapsules as carriers for drug delivery
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Rattle-type hollow CaWO_4:Tb~(3+)@SiO_2 nanocapsules as carriers for drug delivery

机译:摇铃型空心CaWO_4:Tb〜(3 +)@ SiO_2纳米胶囊为药物输送载体

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Rattle-type hollow nanocapsules are among of the most promising candidates as drug carriers owing to their huge inner space and multifunctional material combination. In this paper, rattle-type hollow CaWO_4:Tb ~(3+)@SiO_2 nanocapsules with a diameter of 100-110 nm and a wall thickness around 10 nm were fabricated. The hollow silica nanospheres were used as nano-reactors and the luminescent core of CaWO_4:Tb ~(3+) was post-filled into the nano-reactors by a vacuum nano-casting route combined with a Pechini-type sol-gel method. Subsequently, doxorubicin hydrochloride (DOX), a model of an anti-cancer drug, is loaded into the CaWO_4:Tb~(3+)@SiO_2 nanocapsules and their cell cytotoxicity, cancer cell uptake and drug release behavior are investigated in vitro. The prepared multifunctional inorganic nanocapsules show a loading capacity for DOX as high as 124 mg g~(-1) and sustained-release properties. The release profile of the drug from DOX-loaded nanocapsules can last over five days. Besides, the blank CaWO_4:Tb ~(3+)@SiO_2 shows very low cytotoxicity against cancer cell lines (HeLa cell) while the DOX-loaded nanocapsules exhibit relatively high efficiency for killing of HeLa cells. The rapid cancer cell uptake process is observed by confocal laser scanning microscopy. The results indicate that a rattle-type hollow CaWO_4:Tb~(3+)@SiO_2 nanocapsule has the potential to be used as drug carrier in therapy. Moreover, it is possible to extend the synthetic strategy in this study to other rattle-type multifunctional composites to meet various demands.
机译:由于其巨大的内部空间和多功能的材料组合,摇铃型空心纳米胶囊是最有前途的候选药物载体。本文制备了直径为100-110nm,壁厚约10nm的拨浪鼓型空心CaWO_4:Tb〜(3 +)@ SiO_2纳米胶囊。将空心二氧化硅纳米球用作纳米反应器,并将CaWO_4:Tb〜(3+)的发光核通过真空纳米浇铸路线结合Pechini型溶胶-凝胶法后填充到纳米反应器中。随后,将盐酸阿霉素(DOX)(一种抗癌药物)装入CaWO_4:Tb〜(3 +)@ SiO_2纳米胶囊中,并对其体外细胞毒性,癌细胞摄取和药物释放行为进行研究。制备的多功能无机纳米胶囊对DOX的负载量高达124 mg g〜(-1),具有缓释性能。药物从装有DOX的纳米胶囊中的释放过程可以持续五天。此外,空白的CaWO_4:Tb〜(3 +)@ SiO_2对癌细胞系(HeLa细胞)显示出极低的细胞毒性,而载有DOX的纳米胶囊对HeLa细胞的杀灭效率较高。通过共聚焦激光扫描显微镜观察到癌细胞的快速摄取过程。结果表明,拨浪鼓型空心CaWO_4:Tb〜(3 +)@ SiO_2纳米胶囊具有作为药物载体的潜力。此外,可以将本研究中的合成策略扩展到其他拨浪鼓型多功能复合材料,以满足各种需求。

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