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两亲性和可生物降解的 hy-PEI-g-PCL-b-PEG 共聚物可根据接枝密度有效地介导转基因表达。

Amphiphilic and biodegradable hy-PEI-g-PCL-b-PEG copolymers efficiently mediate transgene expression depending on their graft density.

机构信息

Department of Pharmaceutics and Biopharmacy, Philipps-Universität, Ketzerbach 63, D-35032 Marburg, Germany.

出版信息

Int J Pharm. 2012 May 1;427(1):80-7. doi: 10.1016/j.ijpharm.2011.05.017. Epub 2011 May 12.

Abstract

Novel biodegradable amphiphilic copolymers hy-PEI-g-PCL-b-PEG were prepared by grafting PCL-b-PEG chains onto hyper-branched poly(ethylene imine) as non-viral gene delivery vectors. Our investigations focused on the influence of graft densities of PCL-b-PEG chains on physico-chemical properties, DNA complexation and transfection efficiency. We found that the transfection efficiencies of these polymers increased at first towards an optimal graft density (n=3) and then decreased. The buffer-capacity-test showed almost exactly the same tendency as transfection efficiency. Cytotoxicity (MTT-assay) depended on the cooperation of PEG molecular weight and graft density of PCL-b-PEG chains. With increasing the graft density, cytotoxicity, zeta-potential, affinity with DNA, stability of the polyplexes and CMC-values were reduced strongly and regularly. Increasing the excess of polymer over DNA was shown to result in a decrease of the observed particle size to 100-200 nm.

摘要

新型可生物降解两亲性嵌段共聚物 hy-PEI-g-PCL-b-PEG 通过接枝 PCL-b-PEG 链到超支化聚(乙烯亚胺)上作为非病毒基因传递载体。我们的研究集中在 PCL-b-PEG 链的接枝密度对物理化学性质、DNA 复合物形成和转染效率的影响。我们发现这些聚合物的转染效率最初在最佳接枝密度(n=3)时增加,然后降低。缓冲容量测试几乎与转染效率呈现出完全相同的趋势。细胞毒性(MTT 测定)取决于 PEG 分子量和 PCL-b-PEG 链的接枝密度的协同作用。随着接枝密度的增加,细胞毒性、zeta 电位、与 DNA 的亲和力、聚合物的稳定性和 CMC 值强烈而有规律地降低。增加聚合物相对于 DNA 的过量,观察到的粒径减小到 100-200nm。

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