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首页> 外文期刊>Chemistry: A European journal >Hollow-core magnetic colloidal nanocrystal clusters with ligand-exchanged surface modification as delivery vehicles for targeted and stimuli-responsive drug release
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Hollow-core magnetic colloidal nanocrystal clusters with ligand-exchanged surface modification as delivery vehicles for targeted and stimuli-responsive drug release

机译:具有配体交换表面修饰的空心核胶体纳米晶体簇作为靶向和刺激反应性药物释放的载体

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摘要

The fabrication of hierarchical magnetic nanomaterials with well-defined structure, high magnetic response, excellent colloidal stability, and biocompatibility is highly sought after for drug-delivery systems. Herein, a new kind of hollow-core magnetic colloidal nanocrystal cluster (HMCNC) with porous shell and tunable hollow chamber is synthesized by a one-pot solvothermal process. Its novelty lies in the "tunability" of the hollow chamber and of the pore structure within the shell through controlled feeding of sodium citrate and water, respectively. Furthermore, by using the ligand-exchange method, folate-modified poly(acrylic acid) was immobilized on the surface of HMCNCs to create folate-targeted HMCNCs (folate-HMCNCs), which endowed them with excellent colloidal stability, pH sensitivity, and, more importantly, folate receptor-targeting ability. These assemblages exhibited excellent colloidal stability in plasma solution. Doxorubicin (DOX), as a model anticancer agent, was loaded within the hollow core of these folate-HMCNCs (folate-HMCNCs-DOX), and drug-release experiments proved that the folate-HMCNCs-DOX demonstrated pH-dependent release behavior. The folate-HMCNCs-DOX assemblages also exhibited higher potent cytotoxicity to HeLa cells than free doxorubicin. Moreover, folate-HMCNCs-DOX showed rapid cell uptake apart from the enhanced cytotoxicity to HeLa cells. Experimental results confirmed that the synthesized folate-HMCNCs are smart nanovehicles as a result of their improved folate receptor-targeting abilities and also because of their combined pH- and magnetic-stimuli response for applications in drug delivery. A hollow victory: Hollow-core magnetic colloidal nanocrystal clusters (HMCNCs) with controllable chambers and tunable porous shells are endowed with pH-stimulated drug-release and targeting capability through a ligand-exchange method (see scheme, PAA= poly(acrylic acid)). Folate-HMCNCs with doxorubicin in the core showed higher cytotoxicity towards HeLa cells than free doxorubicin.
机译:具有良好定义的结构,高磁响应,优异的胶体稳定性和生物相容性的分级磁性纳米材料的制备对于药物递送系统是高度追求的。本文通过一锅溶剂热法合成了一种新型的具有多孔壳和可调中空室的空心磁胶体纳米晶体簇(HMCNC)。其新颖之处在于中空腔室和壳内孔结构的“可调性”,分别通过柠檬酸钠和水的受控进料实现。此外,通过配体交换方法,将叶酸改性的聚丙烯酸固定在HMCNC的表面上,以生成针对叶酸的HMCNC(叶酸-HMCNCs),从而赋予它们出色的胶体稳定性,pH敏感性和更重要的是,叶酸受体的靶向能力。这些组合物在血浆溶液中显示出优异的胶体稳定性。阿霉素(DOX)作为模型抗癌药,被装载在这些叶酸-HMCNCs(叶酸-HMCNCs-DOX)的中空,药物释放实验证明叶酸-HMCNCs-DOX表现出pH依赖性的释放行为。与游离阿霉素相比,叶酸-HMCNCs-DOX组合物对HeLa细胞的杀伤力也更高。此外,叶酸-HMCNCs-DOX除能增强对HeLa细胞的细胞毒性外,还显示出快速的细胞摄取。实验结果证实,合成的叶酸-HMCNCs是智能的纳米载体,这是由于它们提高了叶酸受体的靶向能力,并且还因为它们结合了pH和磁刺激响应,可用于药物递送。一个空洞的胜利:具有可控腔室和可调多孔壳的空心磁胶体纳米晶体簇(HMCNC)通过配体交换方法赋予了pH刺激的药物释放和靶向能力(参见方案,PAA =聚丙烯酸) )。核心为阿霉素的叶酸-HMCNCs比游离阿霉素对HeLa细胞具有更高的细胞毒性。

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