医学
周围神经
神经损伤
神经导管
固定(群体遗传学)
外科
壳聚糖
植入
周围神经损伤
化学
解剖
人口
生物化学
环境卫生
作者
Meng Zhang,Heng An,Zhen Gu,Yi-Chong Zhang,Teng Wan,Hao-Ran Jiang,Fengshi Zhang,Baoguo Jiang,Na Han,Yongqiang Wen,Peixun Zhang
标识
DOI:10.1016/j.ijbiomac.2023.126793
摘要
The incidence of peripheral nerve injury (PNI) is high worldwide, and a poor prognosis is common. Surgical closure and repair of the affected area are crucial to ensure the effective treatment of peripheral nerve injuries. Despite being the standard treatment approach, reliance on sutures to seal the severed nerve ends introduces several limitations and restrictions. This technique is intricate and time-consuming, and the application of threading and punctate sutures may lead to tissue damage and heightened tension concentrations, thus increasing the risk of fixation failure and local inflammation. This study aimed to develop easily implantable chitosan-based peripheral nerve repair conduits that combine acrylic acid and cleavable N-hydroxysuccinimide to reduce nerve damage during repair. In ex vivo tissue adhesion tests, the conduit achieved maximal interfacial toughness of 705 J m−2 ± 30 J m−2, allowing continuous bridging of the severed nerve ends. Adhesive repair significantly reduces local inflammation caused by conventional sutures, and the positive charge of chitosan disrupts the bacterial cell wall and reduces implant-related infections. This promises to open new avenues for sutureless nerve repair and reliable medical implants.
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