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首页> 外文期刊>Organic & biomolecular chemistry >Polycationic amphiphilic cyclodextrins as gene vectors: effect of the macrocyclic ring size on the DNA complexing and delivery propertiesf
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Polycationic amphiphilic cyclodextrins as gene vectors: effect of the macrocyclic ring size on the DNA complexing and delivery propertiesf

机译:聚阳离子两亲环糊精作为基因载体:大环大小对DNA络合和传递特性的影响f

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摘要

A collection of homologous monodisperse facial amphiphiles consisting of an α-, β- or γ-cyclodextrin (α, β or γCD) platform exposing a multivalent display of cationic groups at the primary rim and bearing hexanoyl chains at the secondary hydroxyls have been prepared to assess the influence of the cyclooligosaccharide core size in their ability to complex, compact and protect pDNA and in the efficiency of the resulting nanocondensates (CDplexes) to deliver DNA into cells and promote transfection in the presence of serum. All the polycationic amphiphilic CDs (paCDs) were able to self-assemble in the presence of the plasmid and produce transfectious nanoparticles at nitrogen/phosphorous ratios ≥5. CDplexes obtained from βCD derivatives generally exhibited higher transfection capabilities, which can be ascribed to their ability to form inclusion complexes with cholesterol, thereby enhancing biological membrane permeability. The presence of thiourea moieties as well as increasing the number of primary amino groups then favour cooperative complexation of the polyphosphate chain, enhancing the stability of the complex and improving transfection. In the a and γCD series, however, only the presence of tertiary amino groups in the cationic clusters translates into a significant improvement of the transfection efficiency, probably by activating endosome escape by the proton sponge mechanism. This set of results illustrates the potential of this strategy for the rational design and optimisation of nonviral gene vectors.
机译:已准备好收集由α-,β-或γ-环糊精(α,β或γCD)平台组成的同源单分散性面部两亲物的集合,这些平台在一级边缘暴露阳离子基团的多价展示,在二级羟基上带有己酰基链。评估环寡糖核心大小对其复合,紧实和保护pDNA的能力以及所得的纳米缩合物(CDplex)将DNA递送至细胞并在存在血清的情况下促进转染的效率的影响。所有的聚阳离子两亲CD(paCD)都能够在质粒存在下自组装,并以氮/磷比≥5产生转染纳米颗粒。从βCD衍生物获得的CD复合物通常表现出更高的转染能力,这归因于它们与胆固醇形成包合物的能力,从而增强了生物膜的渗透性。硫脲部分的存在以及增加的伯氨基基团的数目有利于多磷酸盐链的协同络合,增强络合物的稳定性并改善转染。然而,在α和γCD系列中,仅阳离子簇中叔氨基的存在可能显着改善了转染效率,这可能是通过质子海绵机制激活了内体逃逸。这组结果说明了该策略在合理设计和优化非病毒基因载体方面的潜力。

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  • 来源
    《Organic & biomolecular chemistry 》 |2012年第29期| p.5570-5581| 共12页
  • 作者单位

    Institut de Chimie de Nice, UMR 7272, Universite de Nice Sophia Antipolis - CNRS, 28, Avenue de Valrose, F-06100 Nice, France;

    Departamento de Quimica Organica, Facultad de Quimica, Universidad de Sevilla, Apartado 553, E-41071 Sevilla, Spain;

    Departamento de Quimica Organica, Facultad de Quimica, Universidad de Sevilla, Apartado 553, E-41071 Sevilla, Spain;

    Institut de Chimie de Nice, UMR 7272, Universite de Nice Sophia Antipolis - CNRS, 28, Avenue de Valrose, F-06100 Nice, France;

    Institut de Chimie de Nice, UMR 7272, Universite de Nice Sophia Antipolis - CNRS, 28, Avenue de Valrose, F-06100 Nice, France;

    Departamento de Quimica Organica, Facultad de Quimica, Universidad de Sevilla, Apartado 553, E-41071 Sevilla, Spain;

    Dept. de Pharmacochimie Moleculaire, Institut de Chimie Moleculaire de Grenoble (CNRS-Univ. de Grenoble, UMR 5063, FR 2607),Bat. E Andre Rassat, BP 53, F-38041 Grenoble, France;

    Instituto de Investigaciones Quimicas (IIQ), CSIC-Universidad de Sevilla, Americo Vespucio 49, Isla de la Cartuja, E-41092 Sevilla,Spain;

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