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使用与靶向细胞表面成纤维细胞生长因子(FGF)受体的多肽偶联的聚乙烯亚胺(PEI)进行受体介导的基因递送。

Receptor-mediated gene delivery using polyethylenimine (PEI) coupled with polypeptides targeting FGF receptors on cells surface.

作者信息

Li Da, Wang Qing-qing, Tang Gu-ping, Huang Hong-liang, Shen Fen-ping, Li Jing-zhong, Yu Hai

机构信息

Institute of Immunology, Zhejiang University, Hangzhou 310058, China.

出版信息

J Zhejiang Univ Sci B. 2006 Nov;7(11):906-11. doi: 10.1631/jzus.2006.B0906.

Abstract

OBJECTIVE

To construct a novel kind of nonviral gene delivery vector based on polyethylenimine (PEI) conjugated with polypeptides derived from ligand FGF with high transfection efficiency and according to tumor targeting ability.

METHODS

The synthetic polypeptides CR16 for binding FGF receptors was conjugated to PEI and the characters of the polypeptides including DNA condensing and particle size were determined. Enhanced efficiency and the targeting specificity of the synthesized vector were investigated in vitro and in vivo.

RESULTS

The polypeptides were successfully coupled to PEI. The new vectors PEI-CR16 could efficiently condense pDNA into particles with around 200 nm diameter. The PEI-CR16/pDNA polyplexes showed significantly greater transgene activity than PEI/pDNA in FGF receptors positive tumor cells in vitro and in vivo gene transfer, while no difference was observed in FGF receptors negative tumor cells. The enhanced transfection efficiency of PEI-CR16 could be blocked by excess free polypeptides.

CONCLUSION

The synthesized vector could improve the efficiency of gene transfer and targeting specificity in FGF receptors positive cells. The vector had good prospect for use in cancer gene therapy.

摘要

目的

构建一种新型的基于聚乙烯亚胺(PEI)与来源于配体成纤维细胞生长因子(FGF)的多肽偶联的非病毒基因递送载体,使其具有高转染效率并具备肿瘤靶向能力。

方法

将用于结合FGF受体的合成多肽CR16与PEI偶联,并测定该多肽的特性,包括DNA凝聚和粒径。在体外和体内研究合成载体的增强效率和靶向特异性。

结果

多肽成功与PEI偶联。新型载体PEI-CR16能够有效地将质粒DNA凝聚成直径约200nm的颗粒。在体外和体内基因转移中,PEI-CR16/pDNA复合物在FGF受体阳性肿瘤细胞中显示出比PEI/pDNA显著更高的转基因活性,而在FGF受体阴性肿瘤细胞中未观察到差异。PEI-CR16增强的转染效率可被过量的游离多肽阻断。

结论

合成的载体可提高FGF受体阳性细胞中的基因转移效率和靶向特异性。该载体在癌症基因治疗中有良好的应用前景。

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