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首页> 外文期刊>Chemistry: A European journal >Host-Guest-Mediated DNA Templation of Polycationic Supramolecules for Hierarchical Nanocondensation and the Delivery of Gene Material
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Host-Guest-Mediated DNA Templation of Polycationic Supramolecules for Hierarchical Nanocondensation and the Delivery of Gene Material

机译:客体介导的聚阳离子超分子DNA模板化的纳米级纳米缩合和基因材料的传递

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摘要

Only a few examples of monodisperse molecular entities that can compact exogenous nucleic acids into nanocomplexes, protect the cargo from the biological environment, facilitate cell internalization, and promote safe transfection have been reported up to date. Although these species open new venues for fundamental studies on the structural requirements that govern the intervening processes and their application in nonviral gene-vector design, the synthesis of these moieties generally requires a relatively sophisticated chemistry, which hampers further development in gene therapy. Herein, we report an original strategy for the reversible complexation and delivery of DNA based on the supramolecular preorganization of a -cyclodextrin-scaffolded polycationic cluster facilitated by bisadamantane guests. The resulting gemini-type, dual-cluster supramolecules can then undergo DNA-templated self-assembly at neutral pHvalue by bridging parallel DNA oligonucleotide fragments. This hierarchical DNA condensation mechanism affords transfectious nanoparticles with buffering capabilities, thus facilitating endosomal escape following cell internalization. Protonation also destabilizes the supramolecular dimers and consequently the whole supramolecular edifice, thus assisting DNA release. Our advanced hypotheses are supported by isothermal titration calorimetry, NMR and circular dichroism spectroscopic analysis, gel electrophoresis, dynamic light scattering, TEM, molecular mechanics, molecular dynamics, and transfection studies conducted in vitro and in vivo.
机译:迄今为止,仅报道了少数几个可以将外源核酸压缩成纳米复合物,保护货物免受生物环境侵害,促进细胞内化并促进安全转染的单分散分子实体的例子。尽管这些物种为控制干预过程的结构要求及其在非病毒基因载体设计中的应用开辟了基础研究的新场所,但这些部分的合成通常需要相对复杂的化学方法,这阻碍了基因治疗的进一步发展。在本文中,我们报告了基于双环金刚烷客人促进的α-环糊精骨架聚阳离子簇的超分子预组织,可逆络合和DNA传递的原始策略。然后,通过桥接平行的DNA寡核苷酸片段,可以在中性pH值下将所得的双子座型,双簇超分子进行DNA模板自组装。这种分层的DNA缩合机制提供了具有缓冲能力的转染纳米颗粒,从而促进了细胞内在化后的内体逃逸。质子化还破坏了超分子二聚体的稳定性,并因此破坏了整个超分子大厦,从而有助于DNA的释放。等温滴定热分析,NMR和圆二色光谱分析,凝胶电泳,动态光散射,TEM,分子力学,分子动力学以及体外和体内进行的转染研究为我们的高级假设提供了支持。

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