周围神经
神经导管
电气导管
外围设备
神经修复
医学
神经外膜修复
周围神经损伤
解剖
工程类
内科学
电信
作者
Shuang Liu,Julia Simińska‐Stanny,Lizhao Yan,Lizhao Yan,Xiaoyue Ding,Tengda Ma,Wei Guo,Yingsong Zhao,Ming Li,Jianghai Chen,Oseweuba Valentine Okoro,Armin Shavandi,Lei Nie
标识
DOI:10.1016/j.mtbio.2024.101324
摘要
Extensive research efforts are being directed towards identifying alternatives to autografts for the treatment of peripheral nerve injuries (PNIs) with engineered nerve conduits (NGCs) identified as having potential for PNI patients. These NGCs, however, may not fulfill the necessary criteria for a successful transplant, such as sufficient mechanical structural support and functionalization. To address the aforementioned limitations of NGCs, the present investigation explored the development of double cross-linked hydrogels (o-CSMA-E) that integrate the biocompatibility of porcine tendon extracellular matrix (ECM) with the antimicrobial and conductive properties of methacrylated quaternary chitosan. The hydrogels had matrices that could promote the growth of axons and the transmission of neural signals. The hydrogels were subsequently incorporated into a nanofibrous PLLA-ZnO sheath scaffold (ZnO@PLLA) to emulate the natural nerve structure, guiding cell growth and facilitating nerve regeneration. The collaboration of core and sheath materials in ZnO@PLLA/o-CSMA-E nerve guidance conduits resulted in enhanced migration of Schwann cells, formation of myelin sheaths, and improved locomotion performance in rats with sciatic nerve defects when
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