纳米载体
胶束
材料科学
纳米医学
生物利用度
纳米技术
两亲性
纳米颗粒
药物输送
聚合物
共聚物
化学
水溶液
有机化学
生物信息学
复合材料
生物
作者
Lang Wang,Zhongmin Geng,Yannis Yan Lum Ho,Jiayu Zhou,Nicola Judge,Yafei Li,Weiping Wang,Jinyao Liu,Yufeng Wang
标识
DOI:10.1021/acsami.2c06205
摘要
Conventional micelles of amphiphilic block copolymers (BCPs) disassemble into individual polymer chains upon dilution to a critical concentration, which causes the premature release of the encapsulated drugs and reduces the drug's bioavailability. Here, by integrating the emerging metal-organic cage (MOC) materials with BCPs, we introduce a new type of composite micellar nanoparticles, block co-polyMOC micelles (or BCPMMs), that are self-assembled in essence yet remarkably stable against dilution. BCPMMs are fabricated via a stepwise assembly strategy that combines MOCs and BCPs in a well-defined, unimolecular core-shell structure. The synergistical interplay between the two components accounts for the particle stability: the MOC core holds BCPs firmly in place and the BCPs increase the MOC's bioavailability. When used as nanocarriers for anticancer drugs, BCPMMs showed an extended blood circulation, a favorable biodistribution, and eventually an improved treatment efficacy in vivo. Given the versatility in designing MOCs and BCPs, we envision that BCPMMs can serve as a modular platform for robust, multifunctional, and tunable nanomedicine.
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