Zhang Zheng, Wu Yuyang, Yu Feng, Niu Chaoqun, Du Zhi, Chen Yong, Du Jie
a State Key Laboratory of Marine Resource Utilization in South China Sea, Hainan Provincial Key Laboratory of Research on Utilization of Si-Zr-Ti Resources , Hainan University , Haikou , P.R. China.
J Biomater Sci Polym Ed. 2017 Oct;28(14):1511-1524. doi: 10.1080/09205063.2017.1332706. Epub 2017 May 25.
The construction and self-assembly of DNA building blocks are the foundation of bottom-up development of three-dimensional DNA nanostructures or hydrogels. However, most self-assembly from DNA components is impeded by the mishybridized intermediates or the thermodynamic instability. To enable rapid production of complicated DNA objects with high yields no need for annealing process, herein different DNA building blocks (Y-shaped, L- and L'-shaped units) were assembled in presence of a cationic comb-type copolymer, poly (L-lysine)-graft-dextran (PLL-g-Dex), under physiological conditions. The results demonstrated that PLL-g-Dex not only significantly promoted the self-assembly of DNA blocks with high efficiency, but also stabilized the assembled multi-level structures especially for promoting the complicated 3D DNA hydrogel formation. This study develops a novel strategy for rapid and high-yield production of DNA hydrogel even derived from instable building blocks at relatively low DNA concentrations, which would endow DNA nanotechnology for more practical applications.
DNA构建模块的构建和自组装是三维DNA纳米结构或水凝胶自下而上发展的基础。然而,大多数由DNA组件进行的自组装会受到杂交错误的中间体或热力学不稳定性的阻碍。为了能够在无需退火过程的情况下快速高产率地生产复杂的DNA物体,本文在生理条件下,在阳离子梳型共聚物聚(L-赖氨酸)-接枝-葡聚糖(PLL-g-Dex)存在的情况下,组装了不同的DNA构建模块(Y形、L形和L'形单元)。结果表明,PLL-g-Dex不仅能高效地显著促进DNA模块的自组装,还能稳定组装的多级结构,特别是促进复杂的3D DNA水凝胶的形成。本研究开发了一种新策略,即使在相对较低的DNA浓度下,也能从不稳定的构建模块中快速高产率地生产DNA水凝胶,这将使DNA纳米技术有更多实际应用。