自愈水凝胶
肌肉萎缩
萎缩
解剖
磁共振成像
生物医学工程
医学
材料科学
化学
病理
放射科
高分子化学
作者
Kai Li,Huizhen Sun,Qiang Zhang,Mingyuan Zhao,Wenxiao Yang,Hong Yu,Jiao Zhang,Shaochen Wang,Tong Chen,Shan Li,Jiazheng Li,Quanmei Sun,Zhuo Ao,Dong Han,Xiaoli Shi
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-08-01
卷期号:25 (32): 12173-12183
被引量:1
标识
DOI:10.1021/acs.nanolett.5c02310
摘要
Injectable hydrogels often lack sufficient mechanical robustness for long-term function under physiological loading, limiting their application in musculoskeletal repair. Inspired by natural soft matter, we developed a hierarchical reinforcement strategy that combines sliding-ring structures with rigid magnetic nanocomposite microdomains. Through self-assembly driven by chelation and hydrogen bonding, hydrophobic drugs and magnetic nanoparticles formed microphase units within the hydrogel network, resulting in an injectable magneto-responsive platform (0.2F@UA-PC) with exceptional mechanical properties, including >1100% tensile strain, high toughness (3.12 MJ/m3), and compressive strength of 6 MPa at 90% strain without rupture. In a sciatic nerve transection-induced muscle atrophy model, intermuscular septum injection enabled localized mechanical stimulation and sustained drug release, significantly enhancing myofiber regeneration (p < 0.01 vs controls). This study presents a robust biomaterial platform for tissue engineering in mechanically demanding environments and provides insights into the role of localized mechanical cues in regenerative medicine.
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