基因沉默
转染
PEG比率
材料科学
乙二醇
树枝状大分子
氨基胺
阳离子聚合
聚合物
基因传递
生物物理学
体内
组合化学
化学
生物化学
生物
基因
高分子化学
有机化学
生物技术
复合材料
经济
财务
作者
Hongmei Liu,Chongyi Liu,Ye Li,Ding Ma,Xiaozhen He,Qianyun Tang,Xue Zhao,Hanbing Zou,Xiaojing Chen,Peifeng Liu
标识
DOI:10.1002/adma.202003523
摘要
Abstract The transfection efficiency of siRNA mediated by cationic polymers is limited due to the instability of polymers/siRNA complexes in the presence of serum. Poly(ethylene glycol) (PEG) is usually applied to modify cationic polymers, so as to reduce protein and cell adsorption and then to improve siRNA transfection efficiency. However, the polymers’ modification with PEG mostly consumes the free amino of the polymers, which can, in turn, reduce the charge density and limit their siRNA transfection efficacy. Here, a new PEG modification strategy that need not consume the surface aminos of polymers is proposed. Catechol–PEG polymers are coated on the surface of phenylboronic acid (PBA)‐modified Generation 5 (G5) poly(amidoamine) dendrimers (G5PBA) via reversible boronate esters to establish PEG‐modified dendrimer/siRNA nanoassemblies for efficient siRNA delivery. The PEG/G5PBA/siRNA nanoassemblies have positive charge and show excellent gene silencing efficacy in the absence of serum in vitro. More importantly, the PEG/G5PBA/siRNA nanoassemblies also exhibit excellent serum resistance and gene silencing efficacy in serum‐containing medium. Furthermore, the effective antiserum and gene silencing efficacy elicited by these nanoassemblies lead to excellent antitumor effects in vivo. This proposed strategy constitutes an important approach to reach an excellent gene silencing efficacy in the presence of serum.
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