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两性离子和 pH 响应性聚缩醛树枝状聚合物的制备及其用于抗癌药物递送。

Fabrication of zwitterionic and pH-responsive polyacetal dendrimers for anticancer drug delivery.

机构信息

Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Polymer Physics & Chemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

College of Biological Science and Engineering, Fuzhou University, Fuzhou 350116, China.

出版信息

Biomater Sci. 2019 Aug 1;7(8):3238-3248. doi: 10.1039/c9bm00606k. Epub 2019 Jun 5.

Abstract

Dendrimer micelles are considered to be the most promising synthetic macromolecules for biomedical applications, but their instability in the blood circulation and undesired release at a non-targeted location have become the major concerns for recent research. Herein, zwitterionic sulfobetaine (SB) functionalized polyacetal dendrimers were fabricated through the alternant aza-Michael addition and thiol-ene click reactions. On account of the acid-labile characteristics of acetal segments and charge reversal effects of sulfobetaine moieties, these uniform dendrimers could form biocompatible and biodegradable micelles in aqueous solutions, which present excellent structural stability, good resistivity to protein absorption and high internalization efficiency for a long period. More importantly, effected by the charge shielding of zwitterions on the surface of polyacetal dendrimers, these DOX-loaded nanoparticles exhibited extremely significant pH-responsive drug release behaviors and remarkable anticancer activity. Thus, we believe that this work not only sheds new light on the application of polyacetal dendrimers but also paves a better way for the development of robust on-demand anti-cancer nanosystems with significant potential for clinical translation.

摘要

树枝状聚合物胶束被认为是最有前途的用于生物医学应用的合成生物大分子,但它们在血液循环中的不稳定性和在非靶向部位的非预期释放已成为近期研究的主要关注点。在此,通过交替的氮杂迈克尔加成和硫醇-烯点击反应制备了两性离子磺酸甜菜碱(SB)功能化聚缩醛树枝状聚合物。由于缩醛片段的酸不稳定特性和磺酸甜菜碱部分的电荷反转效应,这些均匀的树枝状聚合物在水溶液中可以形成具有生物相容性和可生物降解性的胶束,具有优异的结构稳定性、良好的抗蛋白吸附能力和长时间的高内化效率。更重要的是,受聚缩醛树枝状聚合物表面两性离子的电荷屏蔽作用的影响,这些载 DOX 的纳米颗粒表现出极其显著的 pH 响应性药物释放行为和显著的抗癌活性。因此,我们相信这项工作不仅为聚缩醛树枝状聚合物的应用开辟了新的途径,也为开发具有临床转化潜力的稳健按需抗癌纳米系统铺平了更好的道路。

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