低临界溶液温度
纳米载体
上临界溶液温度
胶束
药物输送
材料科学
聚合物
临界胶束浓度
两亲性
化学工程
色谱中的热响应聚合物
PEG比率
纳米技术
化学
水溶液
有机化学
共聚物
复合材料
经济
财务
高效液相色谱法
工程类
反相色谱法
作者
Weishuo Li,Liwen Huang,Xiaoying Ying,Jian You,Hong Yuan,Fuqiang Hu,Yong‐Zhong Du
标识
DOI:10.1002/anie.201411524
摘要
Abstract Thermally sensitive polymeric nanocarriers were developed to optimize the release profile of encapsulated compounds to improve treatment efficiency. However, when referring to thermally sensitive polymeric nanocarriers, this usually means systems fabricated from lower critical solution temperature (LCST) polymers, which have been intensively studied. To extend the field of thermally sensitive polymeric nanocarriers, we for the first time fabricated a polymeric drug delivery system having an upper critical solution temperature (UCST) of 43 °C based on an amphiphilic polymer poly(AAm‐co‐AN)‐g‐PEG. The resulting polymeric micelles could effectively encapsulate doxorubicin and exhibited thermally sensitive drug release both in vitro and in vivo. A drastically improved anticancer efficiency (IC 50 decreased from 4.6 to 1.6 μg mL −1 , tumor inhibition rate increased from 55.6 % to 92.8 %) was observed. These results suggest that UCST‐based drug delivery can be an alternative to thermally sensitive LCST‐based drug delivery systems for an enhanced antitumor efficiency.
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