Preparation and performance of electrically conductive decellularized nerve matrix hydrogel conduits

去细胞化 神经导管 材料科学 生物相容性 生物医学工程 再生(生物学) 电气导管 聚吡咯 组织工程 周围神经 聚合物 复合材料 聚合 解剖 医学 工程类 细胞生物学 生物 冶金 机械工程
作者
Shiyun Yin,Jiangyi Zhou,Jinsong Wang,Bin Xia,Guobao Chen
出处
期刊:Journal of Biomaterials Applications [SAGE Publishing]
卷期号:38 (4): 471-483 被引量:2
标识
DOI:10.1177/08853282231200963
摘要

Peripheral nerve injury (PNI) is one of the major clinical treatment challenges following an impact on the body. When PNI manifests as nerve gaps, surgical connections and exogenous grafts are required. Recently, electrically conductive polymers (CPs) based nerve guidance conduits have yielded promising results for treating PNI. Polypyrrole (PPy) has become one of the most commonly used CPs in PNI repair due to its advantages of high conductivity and excellent biocompatibility. In this study, we combined different PPy concentrations with a chitosan (CS) temperature-sensitive hydrogel system containing decellularized nerve matrix (DNM) to construct the electrically conductive nerve conduits. We evaluated the physical and biological properties of four groups of nerve conduits. It was found that the PPy concentrations were proportional to the electrical conductivity of the nerve conduits. The mechanical properties of the nerve conduits increased with higher PPy concentrations but decreased when the PPy concentration was as high as 8%. Meanwhile, the co-blending of PPy and DNM gave the nerve conduit suitable degradation properties. Furthermore, in vitro cytotoxicity assay and live/dead assay demonstrated these conduits could support the adhesion and growth of cells. In summary, the electrically conductive nerve conduits with high conductivity, mechanical properties, biodegradation characteristics, and cytocompatibility had potential applications in the field of peripheral nerve regeneration.

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