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线性阳离子点击聚合物/DNA 纳米粒:用于基因传递的体外结构-活性关系和体内评价。

Linear cationic click polymers/DNA nanoparticles: in vitro structure-activity relationship and in vivo evaluation for gene delivery.

机构信息

Center of Pharmaceutics, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.

出版信息

Bioconjug Chem. 2011 Jun 15;22(6):1153-61. doi: 10.1021/bc200008j. Epub 2011 May 23.

Abstract

The aim of this work was to explore the structure--activity relationships (SAR) of a series of novel linear cationic click polymers with various structures for in vitro gene delivery and in vivo gene transfer. The experimental results revealed that the minimal structure variation could result in a crucial effect on DNA-binding ability, buffering capacity, and the cellular delivery capacity of polymer, all of which brought about the obvious effects on their transfection efficiencies. The polymer synthesized from diazide monomer containing bis-ethylenediamine unit and dialykene monomer containing bis-ethylene glycol unit (B(2)) could effectively condense DNA into complex nanoparticles (B(2)Ns), which showed the highest in vitro transfection efficiency. The biodistribution and transfection efficiency of B(2)Ns in nude mice bearing tumor demonstrated the ability of effectively delivering DNA into tumor tissue. These results implied that this gene vector based on linear cationic click polymer could be a promising gene delivery system for tumor gene therapy.

摘要

本工作旨在探索一系列具有不同结构的新型线性阳离子点击聚合物的结构-活性关系(SAR),用于体外基因传递和体内基因转移。实验结果表明,最小的结构变化可能对 DNA 结合能力、缓冲能力和聚合物的细胞传递能力产生关键影响,所有这些都会对其转染效率产生明显影响。由含有双乙二胺单元的叠氮单体和含有双乙二醇单元的二烯单体合成的聚合物(B(2))可以有效地将 DNA 凝聚成复合纳米颗粒(B(2)Ns),其表现出最高的体外转染效率。在携带肿瘤的裸鼠中,B(2)Ns 的分布和转染效率证明了其将 DNA 有效递送到肿瘤组织的能力。这些结果表明,基于线性阳离子点击聚合物的这种基因载体可能是一种有前途的肿瘤基因治疗的基因传递系统。

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