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首页> 外文期刊>Bioconjugate Chemistry >Efficient Dendrimer-DNA Complexation and Gene Delivery Vector Properties of Nitrogen-Core Poly(propyl ether imine) Dendrimer in Mammalian Cells
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Efficient Dendrimer-DNA Complexation and Gene Delivery Vector Properties of Nitrogen-Core Poly(propyl ether imine) Dendrimer in Mammalian Cells

机译:哺乳动物细胞中氮核心聚丙醚亚胺树状聚合物的高效树状聚合物-DNA络合和基因传递载体特性

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摘要

Dendrimers as vectors for gene delivery were established, primarily by utilizing few prominent dendrimer types so far. We report herein studies of DNA complexation efficacies and gene delivery vector properties of a nitrogen-core poly(propyl ether imine) (PETIM) dendrimer, constituted with 22 tertiary amine internal branches and 24 primary amines at the periphery. The interaction of the dendrimer with pEGFPDNA was evaluated through UV-vis, circular dichroism (CD) spectral studies, ethidium bromide fluorescence emission quenching, thermal melting, and gel retardation assays, from which most changes to DNA structure during complexation was found to occur at a weight ratio of dendrimer;DNA ~ 2:1. The zeta potential measurements further confirmed this stoichiometry at electroneutrality. The structure of a DNA oligomer upon dendrimer complexation was simulated through molecular modeling and the simulation showed that the dendrimer enfolded DNA oligomer along both major and minor grooves, without causing DNA deformation, in 1:1 and 2:1 dendrimer-to-DNA complexes. Atomic force microscopy (AFM) studies on dendrimer-pEGFP DNA complex showed an increase in the average z-height as a result of dendrimers decorating the DNA, without causing a distortion of the DNA structure. Cytotoxicity studies involving five different mammalian cell lines, using [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-tetrazolium bromide] (MTT) assay, reveal the dendrimer toxicity profile (IC_(50)) values of ~400-1000 μg mL~(-1), depending on the cell line tested. Quantitative estimation, using luciferase assay, showed that the gene transfection was at least 100 times higher when compared to poly(ethylene imine) branched polymer, having similar number of cationic sites as the dendrimer. The present study establishes the physicochemical behavior of new nitrogen-core PETIM dendrimer-DNA complexes, their lower toxicities, and efficient gene delivery vector properties.
机译:建立树状大分子作为用于基因递送的载体,主要通过到目前为止利用几种突出的树状大分子类型来建立。我们在这里报告的DNA络合效率和氮传递聚(丙醚亚胺)(PETIM)树枝状大分子的DNA传递载体特性的研究,由22个叔胺内部分支和外围的24个伯胺组成。通过紫外可见光谱,圆二色性(CD)光谱研究,溴化乙锭荧光发射猝灭,热熔和凝胶阻滞试验评估了树枝状聚合物与pEGFPDNA的相互作用,发现络合过程中DNA结构的大部分变化发生在树状大分子的重量比; DNA约2:1。 ζ电位的测量进一步证实了该化学计量在电子中性下。通过分子建模模拟了树枝状聚合物络合后的DNA寡聚物的结构,仿真结果表明,树枝状聚合物与DNA的复合物中,树枝状聚合物沿主要和次要沟槽都包裹着DNA寡聚物,而不会引起DNA变形。 。对树枝状聚合物-pEGFP DNA复合物的原子力显微镜(AFM)研究表明,由于树枝状聚合物修饰DNA,平均z高度增加,而不会引起DNA结构的变形。细胞毒性研究涉及五个不同的哺乳动物细胞系,使用[3-(4,5-二甲基噻唑-2-基)-2,5-二苯基溴化四唑鎓](MTT)测定,揭示了树状聚合物毒性谱(IC_(50))值〜400-1000μgmL〜(-1),取决于测试的细胞系。使用荧光素酶测定的定量估计显示,与具有与树状聚合物相似的阳离子位点的聚(亚乙基亚胺)支化聚合物相比,基因转染至少高100倍。本研究建立了新型氮核PETIM树状聚合物-DNA复合物的理化行为,其较低的毒性和有效的基因传递载体特性。

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