Asayama Shoichiro, Sekine Takashi, Kawakami Hiroyoshi, Nagaoka Shoji
Department of Applied Chemistry, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji, Tokyo 192-0397, Japan.
Bioconjug Chem. 2007 Sep-Oct;18(5):1662-7. doi: 10.1021/bc700205t. Epub 2007 Aug 25.
Poly(1-vinylimidazole) (PVIm) with aminoethyl groups has been synthesized as a new pH-sensitive polycation to enhance cell-specific gene delivery. The resulting aminated PVIm (PVIm-NH2) was water-soluble despite deprotonation of the imidazole groups at physiological pH, as determined by acid-base titration and solution turbidity measurement. Hemolysis assay showed that PVIm-NH2 enhanced membrane disruptive ability at endosomal pH, owing to the protonation of the imidazole groups with a pKa value around 6.0. Agarose gel retardation assay proved that the introduced aminoethyl groups worked as anchor groups to retain DNA. Furthermore, the ternary complex of DNA, PVIm-NH2, and a poly(L-lysine) conjugated with lactose molecules, PLL-Lac, at pH 7.4 dissociated the PLL-Lac polycation by protonation of the imidazole groups of PVIm-NH2 at pH 6.0. The resulting PVIm-NH2/DNA binary complexes easily released DNA, as compared with the PLL-Lac/PVIm-NH2/DNA ternary complex, which was examined by competitive exchange with dextran sulfate. By using PVIm-NH2 as a pH-sensitive DNA carrier, as well as PLL-Lac as a cell-targeting DNA carrier, the resulting ternary complex specifically mediated the gene expression, which depended on the protonation of the imidazole groups, on human hepatoma HepG2 cells with asialoglycoprotein receptors. These results suggest that the cell-specific gene delivery mediated by PLL-Lac was enhanced by PVIm-NH2 as a new pH-sensitive polycation.
带有氨乙基的聚(1-乙烯基咪唑)(PVIm)已被合成作为一种新型的pH敏感聚阳离子,以增强细胞特异性基因递送。通过酸碱滴定和溶液浊度测量确定,尽管咪唑基团在生理pH下发生去质子化,但所得的胺化PVIm(PVIm-NH2)仍可溶于水。溶血试验表明,PVIm-NH2在内涵体pH下增强了膜破坏能力,这是由于咪唑基团的质子化,其pKa值约为6.0。琼脂糖凝胶阻滞试验证明,引入的氨乙基基团作为锚定基团来保留DNA。此外,在pH 7.4时,DNA、PVIm-NH2和与乳糖分子共轭的聚(L-赖氨酸)PLL-Lac的三元复合物在pH 6.0时通过PVIm-NH2咪唑基团的质子化使PLL-Lac聚阳离子解离。与通过与硫酸葡聚糖竞争交换检测的PLL-Lac/PVIm-NH2/DNA三元复合物相比,所得的PVIm-NH2/DNA二元复合物很容易释放DNA。通过使用PVIm-NH2作为pH敏感的DNA载体,以及PLL-Lac作为细胞靶向DNA载体,所得的三元复合物特异性地介导了基因表达,这取决于咪唑基团的质子化,在具有去唾液酸糖蛋白受体的人肝癌HepG2细胞上。这些结果表明,作为一种新型pH敏感聚阳离子的PVIm-NH2增强了由PLL-Lac介导的细胞特异性基因递送。