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用于提高基因转移效率的星型载体的光诱导交联

Photoinduced cross-linking of star vector for improvement of gene transfer efficiency.

作者信息

Nemoto Yasushi, Zhou Yue-Min, Tatsumi Eisuke, Nakayama Yasuhide

机构信息

Department of Bioengineering, Advanced Medical Engineering Center, National Cardiovascular Center Research Institute, 5-7-1 Fujishiro-dai, Suita, Osaka, Japan.

出版信息

Bioconjug Chem. 2008 Dec;19(12):2513-9. doi: 10.1021/bc800003t.

Abstract

This study aimed to investigate the effect of cross-linking of a cationic nonviral gene carrier on gene expression. As a precursor for photo-cross-linking, a star-shaped, six-branched cationic polymer of poly(N,N-dimethylaminopropylacrylamide) (six-branched star vector, SV), which was previously designed as a gene carrier, was synthesized by iniferter-based living radical polymerization. Upon UV irradiation, the number-average molecular weight (Mn) of the SV increased from ca. 28 kDa to ca. 32 kDa (irradiation time, 180 min) and ca. 46 kDa (240 min) with broadness of the polydispersity due to the coupling reaction between the polymer radicals generated at the terminal ends of each branch of the SVs, resulting in the preparation of cross-linked SVs (CSVs) without the use of any chemical cross-linking agents. Irrespective of cross-linking, all the SVs were able to interact with and condense luciferase-encoding plasmid DNA to yield relatively stable polymer/DNA complexes (polyplexes) of approximate diameter 150 nm with zeta-potential of ca. 20 mV. However, a transfection study using several types of cell lines, HeLa, Hep G2, 293, and COS-1, showed that by cross-linking of SVs the luciferase activity increased drastically. The activity with CSV (Mn=ca. 46 kDa) was increased by at least 1 order of magnitude in the original SV (Mn=ca. 28 kDa), which was several-fold that in the SV with the same molecular weight in all cells. In all SVs, no significant cellular cytotoxicity was observed even at a high charge ratio of 45. The SV-based gene transfection was significantly enhanced by the cross-linking of the SVs.

摘要

本研究旨在探究阳离子非病毒基因载体的交联对基因表达的影响。作为光交联的前体,一种星形六分支聚(N,N - 二甲基氨基丙基丙烯酰胺)阳离子聚合物(六分支星形载体,SV),此前被设计为基因载体,通过基于引发转移终止剂的活性自由基聚合反应合成。经紫外线照射后,SV的数均分子量(Mn)从约28 kDa增加到约32 kDa(照射时间180分钟)和约46 kDa(240分钟),且多分散性变宽,这是由于SV各分支末端产生的聚合物自由基之间的偶联反应所致,从而在不使用任何化学交联剂的情况下制备出交联的SV(CSV)。无论是否交联,所有的SV都能够与编码荧光素酶的质粒DNA相互作用并使其凝聚,形成直径约150 nm、ζ电位约为20 mV的相对稳定的聚合物/DNA复合物(多聚体)。然而,一项使用多种细胞系(HeLa、Hep G2、293和COS - 1)的转染研究表明,通过交联SV,荧光素酶活性大幅提高。CSV(Mn = 约46 kDa)的活性比原始SV(Mn = 约28 kDa)至少提高了1个数量级,在所有细胞中,其活性是相同分子量SV的几倍。在所有的SV中,即使在高达45的高电荷比下,也未观察到明显的细胞毒性。基于SV的基因转染通过SV的交联得到显著增强。

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