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Chemical and photochemical DNA gears reversibly control stiffness shape-memory self-healing and controlled release properties of polyacrylamide hydrogels

机译:化学和光化学DNA齿轮可逆地控制聚丙烯酰胺水凝胶的刚度形状记忆自我修复和控制释放特性

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摘要

A new class of stimuli-responsive DNA-based polyacrylamide hydrogels is described. They consist of glucosamine–boronate ester-crosslinked polyacrylamide chains being cooperatively bridged by stimuli-responsive nucleic acids. The triggered closure and dissociation of the stimuli-responsive units lead to switchable stiffness properties of the hydrogel. One hydrogel includes glucosamine–boronate esters and K+-ion-stabilized G-quadruplex units as cooperative crosslinkers. The hydrogel bridged by the two motifs reveals high stiffness, whereas the separation of the G-quadruplex bridges by 18-crown-6-ether yields a low stiffness hydrogel. By cyclic treatment of the hydrogel with K+-ions and 18-crown-6-ether, it is reversibly cycled between high and low stiffness states. The second system involves a photo-responsive hydrogel that reveals light-induced switchable stiffness functions. The polyacrylamide chains are cooperatively crosslinked by glucosamine–boronate esters and duplex nucleic acid bridges stabilized by trans-azobenzene intercalator units. The resulting hydrogel reveals high stiffness. Photoisomerization of the trans-azobenzene units to the cis-azobenzene states results in the separation of the duplex nucleic acid bridges and the formation of a low stiffness hydrogel. The control over the stiffness properties of the hydrogel matrices by means of K+-ions/crown ether or photoisomerizable trans-azobenzene/cis-azobenzene units is used to develop shape-memory, self-healing, and controlled drug-release hydrogel materials.
机译:描述了新型的基于刺激的DNA聚丙烯酰胺水凝胶。它们由氨基葡萄糖-硼酸酯交联的聚丙烯酰胺链组成,这些链被刺激反应性核酸协同桥接。刺激响应单元的触发的闭合和解离导致水凝胶的可切换的刚度性质。一种水凝胶包括氨基葡萄糖-硼酸酯和K + 离子稳定的G-四链体单元作为协同交联剂。由两个基元桥接的水凝胶显示出高刚性,而由18冠6醚分离G-四链桥产生的低刚性水凝胶。通过用K + -离子和18-冠-6-醚对水凝胶进行循环处理,可逆地在高刚性和低刚性状态之间循环。第二个系统涉及光响应水凝胶,该水凝胶显示出光诱导的可切换刚度功能。聚丙烯酰胺链通过氨基葡萄糖-硼酸酯和反式偶氮苯嵌入剂单元稳定的双链核酸桥协同交联。所得的水凝胶显示出高的刚度。反式-偶氮苯单元的光异构化为顺式-偶氮苯状态导致双链核酸桥的分离和低硬度水凝胶的形成。通过K + -离子/冠醚或可光致异构化的反式偶氮苯/顺式偶氮苯单元控制水凝胶基质的刚度特性,用于形成形状记忆,自我修复和控释水凝胶材料。

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