树枝状大分子
活性氧
两亲性
小干扰RNA
药物输送
生物物理学
基因沉默
材料科学
化学
纳米技术
基因传递
生物化学
转染
生物
聚合物
基因
共聚物
复合材料
作者
Xiaoxuan Liu,Yang Wang,Chao Chen,Aura Tintaru,Yu Cao,Juan Liu,Fabio Ziarelli,Jingjie Tang,Hongbo Guo,Roseline Rosas,Suzanne Giorgio,Laurence Charles,Palma Rocchi,Ling Peng
标识
DOI:10.1002/adfm.201604192
摘要
Functional materials capable of responding to stimuli intrinsic to diseases are extremely important for specific drug delivery at the disease site. However, developing on‐demand stimulus‐responsive vectors for targeted delivery is highly challenging. Here, a stimulus‐responsive fluorinated bola‐amphiphilic dendrimer is reported for on‐demand delivery of small interfering RNA (siRNA) in response to the characteristic high level of reactive oxygen species (ROS) in cancer cells. This dendrimer bears a ROS‐sensitive thioacetal in the hydrophobic core and positively charged poly(amidoamine) dendrons at the terminals, capable of interacting and compacting the negatively charged siRNA into nanoparticles to protect the siRNA and promote cellular uptake. The ROS‐sensitive feature of this dendrimer boosts specific and efficient disassembly of the siRNA/vector complexes in ROS‐rich cancer cells for effective siRNA delivery and gene silencing. Moreover, the fluorine tags in the vector enable 19 F‐NMR analysis of the ROS‐responsive delivery process. In addition, this ingenious and distinct bola‐amphiphilic dendrimer is also able to combine the advantageous delivery features of both lipid and dendrimer vectors. Therefore, it represents an innovative on‐demand stimulus‐responsive delivery platform.
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