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由类血管灌注支持的双网络水凝胶的可持续机械化学生长。

Sustainable mechanochemical growth of double-network hydrogels supported by vascular-like perfusion.

作者信息

Wei Gumi, Kudo Yumeko, Matsuda Takahiro, Wang Zhi Jian, Mu Qi Feng, King Daniel R, Nakajima Tasuku, Gong Jian Ping

机构信息

Graduate School of Life Science, Hokkaido University, Sapporo 001-0021, Japan.

Institute for Chemical Reaction Design and Discovery (WPI-ICReDD), Hokkaido University, Sapporo 001-0021, Japan.

出版信息

Mater Horiz. 2023 Oct 30;10(11):4882-4891. doi: 10.1039/d3mh01038d.

Abstract

Double-network (DN) gels are unique mechanochemical materials owing to their structures that can be dynamically remodelled during use. The mechanical energy applied to DN gels is efficiently transferred to the chemical bonds of the brittle network, generating mechanoradicals that initiate the polymerisation of pre-loaded monomers, thereby remodelling the materials. To attain continuous remodelling or growth in response to repetitive mechanical stimuli, a sustainable supply of chemical reagents to such dynamic materials is essential. In this study, inspired by the vascular perfusion transporting nutrients to cells, we constructed a circulatory system for a continuous supply of chemicals to channel-containing DN hydrogels (c-DN gels). The perfusion of monomer solutions through the channel and permeability of the c-DN gels not only replenishes the monomers consumed by the polymerisation but also replenishes the water loss caused by the surface evaporation of hydrogel, thereby freeing the mechanochemical process of DN gels from the constraints of the underwater environment. The facile chemical supply enabled us to modulate the mechanical enhancement of the c-DN gel and attain muscle-like strengthening under repeated mechanical training in deoxygenated air. We also studied the kinetics of polymer growth and strengthening and deciphered unique features of mechanochemical reaction in DN gels including the extremely long-living radicals and delayed mechanical strengthening.

摘要

双网络(DN)凝胶是独特的机械化学材料,这归因于其结构在使用过程中可动态重塑。施加于DN凝胶的机械能被有效地传递至脆性网络的化学键,产生引发预加载单体聚合的机械自由基,从而重塑材料。为了响应重复的机械刺激实现持续重塑或生长,向此类动态材料持续供应化学试剂至关重要。在本研究中,受血管向细胞输送营养物质的灌注过程启发,我们构建了一个循环系统,用于向含通道的DN水凝胶(c-DN凝胶)持续供应化学物质。单体溶液通过通道的灌注以及c-DN凝胶的渗透性不仅补充了聚合反应消耗的单体,还补充了水凝胶表面蒸发导致的水分流失,从而使DN凝胶的机械化学过程摆脱水下环境的限制。简便的化学物质供应使我们能够调节c-DN凝胶的机械增强效果,并在脱氧空气中进行重复机械训练时实现类似肌肉的强化。我们还研究了聚合物生长和强化的动力学,并解读了DN凝胶中机械化学反应的独特特征,包括寿命极长的自由基和延迟的机械强化。

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