钼
周围神经
电气导管
神经导管
锌
外围设备
材料科学
生物医学工程
化学
解剖
医学
冶金
工程类
内科学
电气工程
作者
Bingbing Yu,Jun Bai,Yanjun Guan,Xueying Huang,Lijing Liang,Zhiqi Ren,Xiangyu Song,Tie-Yuan Zhang,Can Yang,Fanqi Dai,Xibo Wang,Xing Sheng,Jiang Peng,Liu Wang,Yu Wang,Lan Yin
标识
DOI:10.1016/j.bios.2024.116578
摘要
Peripheral nerve injury (PNI) poses a significant public health issue, often leading to muscle atrophy and persistent neuropathic pain, which can drastically impact the quality of life for patients. Electrical stimulation represents an effective and non-pharmacological treatment to promote nerve regeneration. Yet, the postoperative application of electrical stimulation remains a challenge. Here, we propose a fully biodegradable, self-powered nerve guidance conduit (NGC) based on dissolvable zinc-molybdenum batteries. The conduit can offer topographic guidance for nerve regeneration and deliver sustained electrical cues between both ends of a transected nerve stump, extending beyond the surgical window. Schwann cell proliferation and adenosine triphosphate (ATP) production are enhanced by the introduction of the zinc-molybdenum batteries. In rodent models with 10-mm sciatic nerve damage, the device effectively enhances nerve regeneration and motor function recovery. This study offers innovative strategies for creating biodegradable and electroactive devices that hold important promise to optimize therapeutic outcomes for nerve regeneration.
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