自愈水凝胶
材料科学
聚乙二醇
共价键
生物医学工程
体内
人工肌肉
生物物理学
高分子化学
化学工程
化学
有机化学
执行机构
生物技术
工程类
电气工程
生物
医学
作者
Kai Li,Yuting Zhu,Qiang Zhang,Yahong Shi,Tun Yan,Xi Lü,Huizhen Sun,Tingting Li,Zhongxian Li,Shi Xiaoli,Dong Han
标识
DOI:10.1002/adhm.202202707
摘要
Injectable hydrogels have been extensively used in tissue engineering where high mechanical properties are key for their functionality at sites of high physiological stress. In this study, an injectable, conductive hydrogel is developed exhibiting remarkable mechanical strength that can withstand a pressure of 500 kPa (85% deformation rate) and display good fatigue resistance, electrical conductivity, and tissue adhesion. A stable covalent cross-linked network with a slip-ring structure by threading amino β-cyclodextrin is formed onto the chain of a four-armed (polyethylene glycol) amino group, and then reacted with the four-armed (polyethylene glycol) maleimide under physiological conditions. The addition of silver nanowires enhances the hydrogel's electrical conductivity, enabling it to act as a good conductor in vivo. The hydrogel is injected into the fascial space, and the results show that the weight and muscle tone of the atrophied gastrocnemius muscle improve, subsequently alleviating muscle atrophy. Overall, this study provides a simple method for the preparation of a conductive hydrogel with high mechanical properties. In addition, the interstitial injection provides a strategy for the use of hydrogels in vivo.
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