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首页> 外文期刊>Nucleic acids research >Formation of DNA nanoparticles in the presence of novel polyamine analogues: a laser light scattering and atomic force microscopic study
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Formation of DNA nanoparticles in the presence of novel polyamine analogues: a laser light scattering and atomic force microscopic study

机译:新型多胺类似物存在下DNA纳米颗粒的形成:激光散射和原子力显微镜研究

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摘要

We synthesized a pentamine (3‐3‐3‐3) and two hexamine (3‐3‐3‐3‐3 and 3‐4‐3‐4‐3) analogues of the natural polyamine, spermine (3‐4‐3) and studied their effectiveness in condensing pGL3 plasmid DNA, using light scattering and atomic force microscopic (AFM) techniques. The midpoint concentration of the polyamines on pGL3 condensation (EC50) was 11.3, 10.6, 1.5, 0.49 and 0.52 μM, respectively, for 3‐4‐3, norspermine (3‐3‐3), 3‐3‐3‐3, 3‐3‐3‐3‐3 and 3‐4‐3‐4‐3 in 10 mM Na cacodylate buffer. Dynamic laser light scattering study showed a decrease in hydrodynamic radii of plasmid DNA particles as the number of positive charges on the polyamines increased. AFM data showed the presence of toroids with outer diameter of 117–191 nm for different polyamines, and a mean height of 2.61 ± 0.77 nm. AFM results also revealed the presence of intermediate structures, including those showing circumferential winding of DNA to toroids. The dependence of the EC50 on Na+ concentration suggests different modes of binding of spermine and its higher valent analogues with DNA. Our results show a 20‐fold increase in the efficacy of hexamines for DNA condensation compared to spermine, and provide new insights into the mechanism(s) of DNA nanoparticle formation. These studies might help to develop novel nonviral gene delivery vehicles.
机译:我们合成了天然多胺精胺(3-4)的五胺(3-3-3-3)和两个六胺(3-3-3-3和3-4-3-3)类似物),并使用光散射和原子力显微镜(AFM)技术研究了它们在浓缩pGL3质粒DNA中的有效性。对于3‐4‐3‐3,去甲精胺(3‐3‐3),pGL3缩合(EC 50 )上多胺的中点浓度分别为11.3、10.6、1.5、0.49和0.52μM,在10 mM甲藻酸钠钠缓冲液中的3-3-3-3、3-3-3-3和3-4-4-3。动态激光散射研究表明,随着多胺上正电荷数量的增加,质粒DNA颗粒的流体力学半径减小。原子力显微镜数据显示,存在多环胺,其外径为117-191 nm,平均高度为2.61±0.77 nm。原子力显微镜的结果还揭示了中间结构的存在,包括那些表明DNA在圆周方向缠绕成环形的结构。 EC 50 对Na + 浓度的依赖性表明精胺及其更高价类似物与DNA的结合方式不同。我们的结果显示,与精胺相比,六胺对DNA缩合的功效提高了20倍,并为DNA纳米颗粒形成的机理提供了新见解。这些研究可能有助于开发新型的非病毒基因传递载体。

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