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用于癌症治疗中靶向给药的适体功能化且主链具有氧化还原响应性的超支化聚合物

Aptamer-Functionalized and Backbone Redox-Responsive Hyperbranched Polymer for Targeted Drug Delivery in Cancer Therapy.

作者信息

Zhuang Yuanyuan, Deng Hongping, Su Yue, He Lin, Wang Ruibin, Tong Gangsheng, He Dannong, Zhu Xinyuan

机构信息

National Engineering Research Center for Nanotechnology, 28 East Jiang Chuan Road, Shanghai 200241, People's Republic of China.

出版信息

Biomacromolecules. 2016 Jun 13;17(6):2050-62. doi: 10.1021/acs.biomac.6b00262. Epub 2016 May 4.

Abstract

A novel type of backbone redox-responsive hyperbranched poly(2-((2-(acryloyloxy)ethyl)disulfanyl)ethyl 4-cyano-4-(((propylthio)carbonothioyl)-thio)-pentanoate-co-poly(ethylene glycol) methacrylate) (HPAEG) has been designed and prepared successfully via the combination of reversible addition-fragmentation chain-transfer (RAFT) polymerization and self-condensing vinyl polymerization (SCVP). Owing to the existence of surface vinyl groups, HPAEG could be efficiently functionalized by DNA aptamer AS1411 via Michael addition reaction to obtain an active tumor targeting drug delivery carrier (HPAEG-AS1411). The amphiphilic HPAEG-AS1411 could form nanoparticles by macromolecular self-assembly strategy. Cell Counting Kit-8 (CCK-8) assay illustrated that HPAEG-AS1411 nanoparticles had low cytotoxicity to normal cell line. Flow cytometry and confocal laser scanning microscopy (CLSM) results demonstrated that HPAEG-AS1411 nanoparticles could be internalized into tumor cells via aptamer-mediated endocytosis. Compared with pure HPAEG nanoparticles, HPAEG-AS1411 nanoparticles displayed enhanced tumor cell uptake. When the HPAEG-AS1411 nanoparticles loaded with anticancer drug doxorubicin (DOX) were internalized into tumor cells, the disulfide bonds in the backbone of HPAEG-AS1411 were cleaved by glutathione (GSH) in the cytoplasm, so that DOX was released rapidly. Therefore, DOX-loaded HPAEG-AS1411 nanoparticles exhibited a high tumor cellular proliferation inhibition rate and low cytotoxicity to normal cells. This aptamer-functionalized and backbone redox-responsive hyperbranched polymer provides a promising platform for targeted drug delivery in cancer therapy.

摘要

通过可逆加成-断裂链转移(RAFT)聚合和自缩合乙烯基聚合(SCVP)相结合的方法,成功设计并制备了一种新型的主链氧化还原响应性超支化聚(2-((2-(丙烯酰氧基)乙基)二硫烷基)乙基 4-氰基-4-(((丙硫基)羰基硫基)-硫代)-戊酸酯-共-聚(乙二醇)甲基丙烯酸酯)(HPAEG)。由于表面乙烯基的存在,HPAEG 可以通过迈克尔加成反应被 DNA 适配体 AS1411 有效功能化,从而获得一种活性肿瘤靶向药物递送载体(HPAEG-AS1411)。两亲性的 HPAEG-AS1411 可以通过大分子自组装策略形成纳米颗粒。细胞计数试剂盒-8(CCK-8)测定表明,HPAEG-AS1411 纳米颗粒对正常细胞系具有低细胞毒性。流式细胞术和共聚焦激光扫描显微镜(CLSM)结果表明,HPAEG-AS1411 纳米颗粒可以通过适配体介导的内吞作用内化到肿瘤细胞中。与纯 HPAEG 纳米颗粒相比,HPAEG-AS1411 纳米颗粒表现出增强的肿瘤细胞摄取。当负载抗癌药物阿霉素(DOX)的 HPAEG-AS1411 纳米颗粒内化到肿瘤细胞中时,HPAEG-AS1411 主链中的二硫键被细胞质中的谷胱甘肽(GSH)裂解,从而使 DOX 迅速释放。因此,负载 DOX 的 HPAEG-AS1411 纳米颗粒对肿瘤细胞增殖具有高抑制率且对正常细胞具有低细胞毒性。这种适配体功能化且主链氧化还原响应性的超支化聚合物为癌症治疗中的靶向药物递送提供了一个有前景的平台。

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