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Tuning DNA Condensation with Zwitterionic Polyamidoamine (zPAMAM) Dendrimers

机译:用两倍离子聚酰胺(ZPamam)树枝状大分子调整DNA凝聚

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摘要

Cationic dendrimers are promising vectors for nonviral gene therapies due to their well-defined size and chemistry. We have synthesized a series of succinylated fourth generation (G4) PAMAM dendrimers to control the DNA packaging in dendriplexes, allowing us to probe the role of charge on DNA packaging. The self-assembly of DNA induced by these zwitterionic PAMAM (zPAMAM) was investigated using small-angle X-ray scattering (SAXS). We demonstrate that changing the degree of modification in zPAMAM DNA significantly alters the packing density of the resulting dendriplexes. Salt sensitivities and pH dependence on the inter-DNA spacing were also examined. The swelling and stability to salt are reduced with increasing degree of PAMAM modification. Lowering the pH leads to significantly tighter hexagonal DNA packaging. In combination, these results show zPAMAM is an effective means to modulate nucleic acid packaging in a deterministic manner.
机译:由于其定义明确的尺寸和化学,阳离子树枝状大分子是非血管基因疗法的有前途的载体。 我们已经合成了一系列琥珀酰化的第四代(G4)PAMAM树枝状大分子,以控制DENDRIPLINES中的DNA包装,使我们能够探测充电对DNA包装的作用。 使用小角X射线散射(SAX)研究由这些两性离子疫苗(ZPamam)诱导的DNA的自组装。 我们证明改变ZPamam DNA中的修饰程度显着改变所得树突的填充密度。 还检查了盐敏性和对DNA间间距的pH依赖性。 随着PAMAM改性程度的增加,盐的溶胀和稳定性降低。 降低pH导致显着更紧密的六边形DNA包装。 组合,这些结果表明ZPamam是以确定性方式调节核酸包装的有效手段。

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