Jo Jun-Ichiro, Ikai Tomonori, Okazaki Arimichi, Nagane Kentaro, Yamamoto Masaya, Hirano Yoshiaki, Tabata Yasuhiko
Department of Biomaterials, Institute for Frontier Medical Sciences, Kyoto University, 53 Kawara-cho, Shogoin, Sakyo-ku, Kyoto 606-8507, Japan.
J Biomater Sci Polym Ed. 2007;18(7):883-99. doi: 10.1163/156856207781367756.
The objective of this study was to prepare a novel gene carrier from pullulan, a polysaccharide with an inherent affinity for the liver, and evaluate the feasibility in gene transfection. Pullulan with different molecular weights was cationized by chemical introduction of spermine. The cationized pullulan derivative was complexed with a plasmid DNA and applied to HepG2 cells for in vitro gene transfection. The level of gene expression depended on the molecular weight of cationized pullulan derivatives and the highest level was observed for the cationized pullulan derivative with a molecular weight of 47.3 x 10(3). Pre-treatment of cells with asialofetuin decreased the level of gene expression by the complexes. These findings indicate that the cationized pullulan derivative is a promising non-viral carrier of plasmid DNA which is internalized in a receptor-mediated fashion.
本研究的目的是用支链淀粉(一种对肝脏具有内在亲和力的多糖)制备一种新型基因载体,并评估其在基因转染中的可行性。通过化学引入精胺使不同分子量的支链淀粉阳离子化。将阳离子化的支链淀粉衍生物与质粒DNA复合,并应用于HepG2细胞进行体外基因转染。基因表达水平取决于阳离子化支链淀粉衍生物的分子量,分子量为47.3×10(3)的阳离子化支链淀粉衍生物观察到最高水平的基因表达。用去唾液酸胎球蛋白预处理细胞可降低复合物的基因表达水平。这些发现表明,阳离子化支链淀粉衍生物是一种有前景的质粒DNA非病毒载体,其以内吞作用的方式被内化。