School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou, People's Republic of China.
Nanotechnology. 2010 Jan 29;21(4):045102. doi: 10.1088/0957-4484/21/4/045102. Epub 2009 Dec 10.
Nuclear transport of exogenous DNA is a major barrier to nonviral gene delivery that needs to be addressed in the design of new vectors. In this study, we prepared pDNA/HMGB1/PEG-PEI terplexes to promote nuclear import. HMGB1 in the terplexes was used to assist the transportation of pDNA into the nucleus of cells, since it contained nuclear localization signal (NLS); PEG chains were introduced to stabilize pDNA/vector terplexes and reduce the cytotoxicity. HMGB1/PEG-PEI combined vectors have been investigated specifically for their structure interaction by atomic force microscopy and circular dichroic spectroscopy. The results demonstrated that the HMGB1 molecule could bind with the pDNA chains, but not condense pDNA well. The PEG-PEI further compacted pDNA/HMGB1 complexes into nanosized spherical terplexes. The pDNA delivered by HMGB1/PEG-PEI combined vectors was significantly accumulated in the nucleus of cells, as observed by confocal laser scanning microscopy. The percentage of GFP-transfected cells and VEGF protein expression level induced by HMGB1/PEG-PEI were 2.6-4.9-fold and 1.4-2.8-fold higher, respectively, than that of a common cationic polymer PEI 25 kDa. Therefore, the HMGB1/PEG-PEI combined vector could be used as a versatile vector for promoting exogenous DNA nuclear localization, thereby enhancing its expression.
外源 DNA 的核转运是非病毒基因递送的主要障碍,需要在新载体的设计中加以解决。在本研究中,我们制备了 pDNA/HMGB1/PEG-PEI 三聚体以促进核内导入。三聚体中的 HMGB1 被用于辅助 pDNA 进入细胞的核内运输,因为它含有核定位信号(NLS);引入 PEG 链是为了稳定 pDNA/载体三聚体并降低细胞毒性。HMGB1/PEG-PEI 联合载体已通过原子力显微镜和圆二色光谱专门研究了其结构相互作用。结果表明,HMGB1 分子可以与 pDNA 链结合,但不能很好地浓缩 pDNA。PEG-PEI 进一步将 pDNA/HMGB1 复合物压缩成纳米级球形三聚体。通过共聚焦激光扫描显微镜观察到,由 HMGB1/PEG-PEI 联合载体递送的 pDNA 显著积累在细胞核内。与普通阳离子聚合物 PEI 25 kDa 相比,HMGB1/PEG-PEI 转染的 GFP 转染细胞的百分比和 VEGF 蛋白表达水平分别提高了 2.6-4.9 倍和 1.4-2.8 倍。因此,HMGB1/PEG-PEI 联合载体可用作促进外源 DNA 核定位的多功能载体,从而增强其表达。