树枝状大分子
基因传递
纳米凝胶
细胞毒性
阳离子聚合
化学
药物输送
材料科学
内化
组合化学
纳米载体
纳米技术
生物物理学
遗传增强
有机化学
体外
生物化学
细胞
生物
基因
作者
Xin Li,Zhijun Ouyang,Laura Hetjens,Ming Ni,Kuailu Lin,Yong Hu,Xiangyang Shi,Andrij Pich
标识
DOI:10.1002/anie.202505669
摘要
Solving the dilemma between efficacy and cytotoxicity of cationic colloidal vectors is one of the biggest challenges in gene delivery. Cationic dendrimer assemblies with hierarchical structure, smart and biomimetic behaviors have been developed for drug/gene delivery in vivo. Here, low‐generation dendrimer nanogels with high yield and purity, tunable size, uniform morphology, and good colloidal stability were synthesized using the emulsion‐free method, which cannot be obtained by the miniemulsion method. Importantly, the dendrimer nanogels integrate the advantages of low‐generation dendrimer and stimuli‐responsive polymer, thus achieving dual‐active groups, o‐hydroxyl amine units, temperature‐responsiveness, polyampholyte property, and self‐triggered aminolysis. With these unique properties, dendrimer nanogels can “temporarily” acquire high charge density through the covalent crosslinking of low‐generation dendrimer for improved DNA compression, promoted cell internalization and lysosomal escape, and efficient DNA delivery, followed by self‐triggered aminolysis in to small dendrimers to control DNA release, reduce cytotoxicity, and facilitate metabolism in vivo. Compared to high‐generation dendrimers, low‐generation dendrimer nanogels display higher gene transfection and therapeutic efficacies, and lower side effects simultaneously. This work provides a facile strategy for the preparation of low‐generation dendrimer nanogels that break up the contradiction between efficacy and cytotoxicity of cationic colloidal vectors in gene therapy.
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