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壳聚糖作为一种非病毒基因递送系统。体外及体内肺部给药后与聚乙烯亚胺相比的结构-性质关系及特性

Chitosan as a nonviral gene delivery system. Structure-property relationships and characteristics compared with polyethylenimine in vitro and after lung administration in vivo.

作者信息

Köping-Höggård M, Tubulekas I, Guan H, Edwards K, Nilsson M, Vårum K M, Artursson P

机构信息

Department of Pharmacy, Division of Pharmaceutics, Uppsala University, Uppsala, Sweden.

出版信息

Gene Ther. 2001 Jul;8(14):1108-21. doi: 10.1038/sj.gt.3301492.

Abstract

Chitosan is a natural cationic linear polymer that has recently emerged as an alternative nonviral gene delivery system. We have established the relationships between the structure and the properties of chitosan-pDNA polyplexes in vitro. Further, we have compared polyplexes of ultrapure chitosan (UPC) of preferred molecular structure with those of optimised polyethylenimine (PEI) polyplexes in vitro and after intratracheal administration to mice in vivo. Chitosans in which over two out of three monomer units carried a primary amino group formed stable colloidal polyplexes with pDNA. Optimized UPC and PEI polyplexes protected the pDNA from serum degradation to approximately the same degree, and they gave a comparable maximal transgene expression in 293 cells. In contrast to PEI, UPC was non toxic at escalating doses. After intratracheal administration, both polyplexes distributed to the mid-airways, where transgene expression was observed in virtually every epithelial cell, using a sensitive pLacZ reporter containing a translational enhancer element. However, the kinetics of gene expression differed - PEI polyplexes induced a more rapid onset of gene expression than UPC. This was attributed to a more rapid endosomal escape of the PEI polyplexes. Although this resulted in a more efficient gene expression with PEI polyplexes, UPC had an efficiency comparable to that of commonly used cationic lipids. In conclusion, this study provides insights into the use of chitosan as a gene delivery system. It emphasises that chitosan is a nontoxic alternative to other cationic polymers and it forms a platform for further studies of chitosan-based gene delivery systems.

摘要

壳聚糖是一种天然阳离子线性聚合物,最近已成为一种替代性非病毒基因递送系统。我们已经在体外建立了壳聚糖 - pDNA复合物的结构与性质之间的关系。此外,我们在体外以及对小鼠进行气管内给药后,将具有优选分子结构的超纯壳聚糖(UPC)复合物与优化的聚乙烯亚胺(PEI)复合物进行了比较。三分之二以上单体单元带有伯氨基的壳聚糖与pDNA形成了稳定的胶体复合物。优化后的UPC和PEI复合物对pDNA的血清降解保护程度大致相同,并且它们在293细胞中产生了相当的最大转基因表达。与PEI不同,UPC在剂量递增时无毒。气管内给药后,两种复合物均分布于中气道,在那里使用含有翻译增强子元件的敏感pLacZ报告基因,几乎在每个上皮细胞中都观察到了转基因表达。然而,基因表达的动力学有所不同——PEI复合物诱导的基因表达起始比UPC更快。这归因于PEI复合物更快的内体逃逸。尽管这导致PEI复合物的基因表达更有效,但UPC的效率与常用阳离子脂质相当。总之,本研究为壳聚糖作为基因递送系统的应用提供了见解。它强调壳聚糖是其他阳离子聚合物的无毒替代品,并且它为基于壳聚糖的基因递送系统的进一步研究形成了一个平台。

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