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核壳型树枝状超分子主体-客体组装作为 pH 响应智能载体用于增强抗癌药物传递

Core-shell tecto dendrimers formed via host-guest supramolecular assembly as pH-responsive intelligent carriers for enhanced anticancer drug delivery.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, People's Republic of China.

出版信息

Nanoscale. 2019 Nov 28;11(46):22343-22350. doi: 10.1039/c9nr08309j.

Abstract

The design of pH-sensitive supramolecular drug delivery systems for efficient antineoplastic drug delivery remains a huge challenge. Herein, we describe the development of pH-responsive core-shell tecto dendrimers (CSTDs) formed using benzimidazole (BM)-modified generation 3 (G3) poly(amidoamine) (PAMAM) dendrimers (G3.NHAc-BM) as a shell and β-cyclodextrin (CD)-modified G5 PAMAM dendrimers (G5.NHAc-CD) as a core. By virtue of the host-guest recognition and pH-responsiveness of BM/β-CD assembly, the pH-sensitive supramolecular CSTDs of G5.NHAc-CD/BM-G3.NHAc were formed and adopted to encapsulate the anticancer drug doxorubicin (DOX) via hydrophobic interactions for pH-responsive drug delivery applications. The synthesis of dendrimer derivatives and the loading of the DOX were well characterized via different methods. We show that the encapsulated DOX can be released in a sustained manner with a rapid release speed under a slightly acidic pH condition (pH < 6), which is similar to acidic tumor microenvironment. The enhanced intracellular release of DOX and improved anticancer activity of the drug-loaded pH-responsive CSTDs were demonstrated and compared with the control CSTDs formed without pH-responsiveness through flow cytometry and viability assays of cancer cells. Furthermore, the pH-sensitive CSTDs also showed efficient drug penetration and growth inhibition of three-dimensional tumor spheroids owing to the faster DOX release in an acidic pH environment. The pH-sensitive G5.NHAc-CD/BM-G3.NHAc CSTDs may be employed as a valuable intelligent delivery system for various anticancer drugs.

摘要

用于高效抗肿瘤药物递送的 pH 敏感超分子药物递送系统的设计仍然是一个巨大的挑战。在此,我们描述了使用苯并咪唑 (BM)-修饰的第三代 (G3) 聚酰胺胺 (PAMAM) 树枝状大分子 (G3.NHAc-BM) 作为壳和β-环糊精 (CD)-修饰的 G5 PAMAM 树枝状大分子 (G5.NHAc-CD) 作为核构建 pH 响应核壳结构的树枝状大分子 (CSTD)。由于 BM/β-CD 组装的主体客体识别和 pH 响应性,形成了 pH 敏感的超分子 CSTD G5.NHAc-CD/BM-G3.NHAc,并通过疏水相互作用来封装抗肿瘤药物阿霉素 (DOX),用于 pH 响应性药物递送应用。通过不同的方法很好地表征了树枝状大分子衍生物的合成和 DOX 的负载。我们表明,封装的 DOX 可以在略微酸性的 pH 条件 (pH < 6) 下通过快速释放速度以持续的方式释放,这类似于酸性肿瘤微环境。通过细胞流式术和癌细胞活力测定,证明了载药 pH 响应 CSTDs 中 DOX 的增强细胞内释放和改善抗癌活性,并与没有 pH 响应性形成的对照 CSTDs 进行了比较。此外,由于在酸性 pH 环境中更快地释放 DOX,pH 敏感的 CSTDs 还显示出对三维肿瘤球体的有效药物渗透和生长抑制作用。pH 敏感的 G5.NHAc-CD/BM-G3.NHAc CSTDs 可以作为各种抗肿瘤药物的有价值的智能递送系统。

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