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从线性构建块构建三维 DNA 水凝胶。

Construction of three-dimensional DNA hydrogels from linear building blocks.

机构信息

NRW Nachwuchsforschergruppe für Nanotechnologie, Organische Chemie, Universität Siegen, Fakultät IV, Department für Chemie und Biologie, Adolf-Reichwein-Strasse 2, 57076 Siegen (Germany) http://www.chemie-biologie.uni-siegen.de/oc/oc1/gruppe_noell/index.html.

出版信息

Angew Chem Int Ed Engl. 2014 Aug 4;53(32):8328-32. doi: 10.1002/anie.201402497. Epub 2014 Jun 25.

Abstract

A three-dimensional DNA hydrogel was generated by self-assembly of short linear double-stranded DNA (dsDNA) building blocks equipped with sticky ends. The resulting DNA hydrogel is thermoresponsive and the length of the supramolecular dsDNA structures varies with temperature. The average diffusion coefficients of the supramolecular dsDNA structures formed by self-assembly were determined by diffusion-ordered NMR spectroscopy (DOSY NMR) for temperatures higher than 60 °C. Temperature-dependent rheological measurements revealed a gel point of 42±1 °C. Below this temperature, the resulting material behaved as a true gel of high viscosity with values for the storage modulus G' being significantly larger than that for the loss modulus G''. Frequency-dependent rheological measurements at 20 °C revealed a mesh size (ξ) of 15 nm. AFM analysis of the diluted hydrogel in the dry state showed densely packed structures of entangled chains, which are also expected to contain multiple interlocked rings and catenanes.

摘要

一种三维 DNA 水凝胶是通过带有粘性末端的短线性双链 DNA(dsDNA)构建块的自组装生成的。所得的 DNA 水凝胶对温度具有响应性,超分子 dsDNA 结构的长度随温度而变化。通过扩散有序 NMR 光谱(DOSY NMR)测定了自组装形成的超分子 dsDNA 结构在高于 60°C 的温度下的平均扩散系数。温度依赖性流变测量显示出凝胶点为 42±1°C。在此温度以下,所得材料表现为高粘度的真正凝胶,储能模量 G'的值明显大于损耗模量 G''。在 20°C 下进行的频率依赖性流变测量显示出网格尺寸(ξ)为 15nm。在干燥状态下对稀释水凝胶的 AFM 分析表明,存在缠结链的密集堆积结构,这些结构还预计包含多个互锁环和索烃。

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