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用于癌细胞特异性递送抗肿瘤药物的功能化氧化石墨烯纳米颗粒。

Functionalized graphene oxide nanoparticles for cancer cell-specific delivery of antitumor drug.

作者信息

Zhao Xubo, Yang Liangwei, Li Xiaorui, Jia Xu, Liu Lei, Zeng Jin, Guo Jinshan, Liu Peng

机构信息

State Key Laboratory of Applied Organic Chemistry and Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University , Lanzhou 730000, China.

出版信息

Bioconjug Chem. 2015 Jan 21;26(1):128-36. doi: 10.1021/bc5005137. Epub 2015 Jan 7.

Abstract

The unique reduction-triggered functional graphene oxide nanoparticles (GON) with well-defined size and uniform distribution were designed as an innovative drug delivery platform for cancer treatment for the first time, via the redox radical polymerization of methacrylic acid from the polyethylene glycol (PEG) modified GON (GON-PEG), following by cross-linking with cystamine. Thermogravimetric analysis demonstrates that the typical PMAA2-GON-PEG carriers contain about 16 wt % PEG segments and 33 wt % poly(methacrylic acid) (PMAA) brushes. PEG moieties are incorporated to make the drug delivery platforms stealthy during blood circulation. Notably, introducing the cross-linked PMAA brushes efficiently minimizes the premature release of doxorubicin (DOX) in the stimulated normal tissues, and accelerates DOX release in the stimulated tumor tissues through response to reduce agent. The carriers showed a 6-fold faster releasing rate at pH 5.0 in the presence of 10 mM glutathione (GSH) (stimulated tumor tissues) than at pH 7.4 with 10 μM GSH (stimulated normal tissues). In vitro cytotoxicity test also showed that the cross-linked PMAA2-GON-PEG (CPMAA2-GON-PEG) carriers had remarkable cytocompatibility, and that the DOX-loaded CPMAA2-GON-PEG had excellent killing capability to SiHa cells.

摘要

首次设计出具有明确尺寸和均匀分布的独特还原触发功能化氧化石墨烯纳米颗粒(GON),作为一种创新的癌症治疗药物递送平台。通过对聚乙二醇(PEG)修饰的GON(GON-PEG)进行甲基丙烯酸的氧化还原自由基聚合,随后与胱胺交联。热重分析表明,典型的PMAA2-GON-PEG载体含有约16 wt%的PEG链段和33 wt%的聚甲基丙烯酸(PMAA)刷。引入PEG部分以使药物递送平台在血液循环中具有隐身性。值得注意的是,引入交联的PMAA刷有效地减少了阿霉素(DOX)在受刺激正常组织中的过早释放,并通过对还原剂的响应加速了DOX在受刺激肿瘤组织中的释放。在10 mM谷胱甘肽(GSH)(模拟肿瘤组织)存在下,载体在pH 5.0时的释放速率比在10 μM GSH(模拟正常组织)的pH 7.4时快6倍。体外细胞毒性试验还表明,交联的PMAA2-GON-PEG(CPMAA2-GON-PEG)载体具有显著的细胞相容性,负载DOX的CPMAA2-GON-PEG对SiHa细胞具有优异的杀伤能力。

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