共聚物
胶束
磷酸二酯键
生物相容性
药物输送
赫拉
高分子化学
化学
分散性
材料科学
开环聚合
聚合物
聚合
水溶液
组合化学
纳米技术
有机化学
细胞
基因
核糖核酸
生物化学
作者
Li Zhang,Dongjian Shi,Chunling Shi,Liangliang Dong,Xiaojie Li,Mingqing Chen
标识
DOI:10.1002/mabi.201600522
摘要
Novel biodegradable polymers with specific properties, structures, and tailorable designs or modifications are in great demand. Poly(phosphoester)s with good biocompatibility and degradability, as well as other adjustable properties have been studied widely because of their potential in biomedical applications. To meet more versatile and diverse biomedical applications, a novel multiarm star‐shaped phosphorester triblock copolymer poly(amido amine)‐ block ‐poly(2‐butynyl phospholane)‐ block ‐poly(2‐methoxy phospholane) (PAMAM‐PBYP‐PMP) is synthesized via organo‐catalyzed sequential ring‐opening polymerization. Supramolecular micelles with good architectural stability are self‐assembled into uniform spherical morphology in aqueous solution. Doxorubicin (DOX) can be encapsulated into the micelles with efficient loading capacity. A slow and sustained release in the environment of simulated intracellular lysosome (pH 5.0 with phosphodiesterase I) is observed. In addition, the copolymers and DOX‐loaded supramolecular micelles exhibit low cell‐toxicity and excellent anticancer activity toward HeLa cells. As a consequence, this multiarm star‐shaped PAMAM‐PBYP‐PMP has great potential in drug delivery system for tumor treatment. image
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