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制备具有双重敏感性的超支化嵌段统计共聚物前药用于控制释放。

Fabrication of Hyperbranched Block-Statistical Copolymer-Based Prodrug with Dual Sensitivities for Controlled Release.

机构信息

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

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences , Changchun 130022, China.

出版信息

Bioconjug Chem. 2018 Jan 17;29(1):190-202. doi: 10.1021/acs.bioconjchem.7b00699. Epub 2017 Dec 21.

Abstract

Dendrimer with hyperbranched structure and multivalent surface is regarded as one of the most promising candidates close to the ideal drug delivery systems, but the clinical translation and scale-up production of dendrimer has been hampered significantly by the synthetic difficulties. Therefore, there is considerable scope for the development of novel hyperbranched polymer that can not only address the drawbacks of dendrimer but maintain its advantages. The reversible addition-fragmentation chain transfer self-condensing vinyl polymerization (RAFT-SCVP) technique has enabled facile preparation of segmented hyperbranched polymer (SHP) by using chain transfer monomer (CTM)-based double-head agent during the past decade. Meanwhile, the design and development of block-statistical copolymers has been proven in our recent studies to be a simple yet effective way to address the extracellular stability vs intracellular high delivery efficacy dilemma. To integrate the advantages of both hyperbranched and block-statistical structures, we herein reported the fabrication of hyperbranched block-statistical copolymer-based prodrug with pH and reduction dual sensitivities using RAFT-SCVP and post-polymerization click coupling. The external homo oligo(ethylene glycol methyl ether methacrylate) (OEGMA) block provides sufficient extracellularly colloidal stability for the nanocarriers by steric hindrance, and the interior OEGMA units incorporated by the statistical copolymerization promote intracellular drug release by facilitating the permeation of GSH and H for the cleavage of the reduction-responsive disulfide bond and pH-liable carbonate link as well as weakening the hydrophobic encapsulation of drug molecules. The delivery efficacy of the target hyperbranched block-statistical copolymer-based prodrug was evaluated in terms of in vitro drug release and cytotoxicity studies, which confirms both acidic pH and reduction-triggered drug release for inhibiting proliferation of HeLa cells. Interestingly, the simultaneous application of both acidic pH and GSH triggers promoted significantly the cleavage and release of CPT compared to the exertion of single trigger. This study thus developed a facile approach toward hyperbranched polymer-based prodrugs with high therapeutic efficacy for anticancer drug delivery.

摘要

具有支化结构和多价表面的树枝状聚合物被认为是最接近理想药物传递系统的候选物之一,但由于合成困难,树枝状聚合物的临床转化和规模化生产受到了显著阻碍。因此,开发新型的超支化聚合物具有相当大的空间,这种聚合物不仅可以解决树枝状聚合物的缺点,还可以保持其优点。在过去的十年中,可逆加成-断裂链转移自缩合乙烯基聚合(RAFT-SCVP)技术通过使用基于链转移单体(CTM)的双头试剂,使分段超支化聚合物(SHP)的制备变得更加容易。同时,我们最近的研究表明,设计和开发嵌段统计共聚物是解决细胞外稳定性与细胞内高传递效率困境的一种简单而有效的方法。为了整合超支化和嵌段统计结构的优势,我们在此报道了使用 RAFT-SCVP 和聚合后点击偶联制备具有 pH 和还原双重敏感性的超支化嵌段统计共聚物前药。外部同型聚(乙二醇甲基醚甲基丙烯酸酯)(OEGMA)嵌段通过空间位阻为纳米载体提供了足够的细胞外胶体稳定性,而通过统计共聚引入的内部 OEGMA 单元通过促进 GSH 和 H 的渗透来促进细胞内药物释放,以利于还原响应的二硫键和 pH 敏感的碳酸盐键的断裂以及削弱药物分子的疏水性包封。通过体外药物释放和细胞毒性研究评估了目标超支化嵌段统计共聚物前药的递送效果,证实了酸性 pH 和还原触发的药物释放可抑制 HeLa 细胞的增殖。有趣的是,与单一触发相比,同时应用酸性 pH 和 GSH 可显著促进 CPT 的切割和释放。因此,本研究开发了一种用于抗癌药物递送的具有高治疗效果的基于树枝状聚合物的前药的简便方法。

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