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首页> 外文期刊>Russian Chemical Reviews: Reviews on Current Topics in Chemistry >Physicochemical and nanotechnological approaches to the design of 'rigid' spatial structures of DNA
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Physicochemical and nanotechnological approaches to the design of 'rigid' spatial structures of DNA

机译:物理化学和纳米技术方法设计DNA的“刚性”空间结构

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This review focuses on physicochemical and nanotechnological approaches to the design of 'rigid' particles based on doublestranded DNA molecules. The physicochemical methods imply cross-linking of adjacent DNA molecules ordered in quasinematic layers of liquid-crystalline dispersion particles by synthetic nanobridges consisting of alternating molecules of an antibiotic (daunomycin) and divalent copper ions, as well as cross-linking of these molecules as a result of their salting-out in quasinematic layers of liquid-crystalline dispersion particles under the action of lanthanide cations. The nanotechnological approach is based on the insertion of gold nanoparticles into the free space between double-stranded DNA molecules that form quasinematic layers of liquid-crystalline dispersion particles. This gives rise to extended clusters of gold nanoparticles and is accompanied by an enhancement of the interaction between the DNA molecules through gold nanoparticles and by a decrease in the solubility of dispersion particles. These approaches produce integrated 'rigid' DNAcontaining spatial structures, which are incompatible with the initial aqueous polymeric solutions and have unique properties.
机译:这篇综述集中在基于双链DNA分子的“刚性”颗粒设计的物理化学和纳米技术方法上。物理化学方法意味着在液晶分散颗粒的准运动层中,相邻的DNA分子通过由抗生素(道诺霉素)和二价铜离子的交替分子组成的合成纳米桥进行交联,以及将这些分子作为交联剂进行交联。它们在镧系元素阳离子作用下在液晶分散颗粒的准运动层中盐析的结果。纳米技术方法基于将金纳米颗粒插入双链DNA分子之间的自由空间,该双链DNA分子形成液晶分散颗粒的准运动层。这引起金纳米颗粒的扩展簇,并伴随着通过金纳米颗粒的DNA分子之间的相互作用的增强以及分散颗粒的溶解度的降低。这些方法产生了包含“刚性” DNA的整合空间结构,该结构与最初的聚合物水溶液不相容,并具有独特的性能。

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