椎间盘
纳米纤维
材料科学
静电纺丝
生物相容性
生物医学工程
纤维软骨
组织工程
环空(植物学)
再生(生物学)
纳米技术
复合材料
解剖
聚合物
医学
骨关节炎
病理
关节软骨
替代医学
冶金
细胞生物学
生物
作者
Chenxi Li,Jia Chen,Yarong Lv,Yueqi Liu,Quanyi Guo,Jiandong Wang,Ce Wang,Ping Hu,Yong Liu
出处
期刊:ACS Biomaterials Science & Engineering
[American Chemical Society]
日期:2021-12-16
卷期号:8 (1): 16-31
被引量:12
标识
DOI:10.1021/acsbiomaterials.1c00970
摘要
Annulus fibrosus fissure and fibrosis of nucleus pulposus are severe morphological characteristics of intervertebral disc degeneration. Currently, surgery or drugs are used to relieve pain in such cases. Tissue engineering is a new multidisciplinary strategy with great potential for use in joint replacement and organ regeneration. Based on the natural anatomy of intervertebral discs, intervertebral disc scaffolds are fabricated by exploiting the special arrangement of extracellular matrix fibers. Electrospun nanofibers possess clear advantages in repairing degenerated intervertebral discs. This article reviews and summarizes recently developed methods for improving and fabricating electrospun nanofiber annulus fibrosus scaffolds in terms of nanofiber alignment, material selection, loading additives, and the progress made in combining other advanced technologies with electrospun nanofibers. In addition, the improvement in mechanical properties and biocompatibility of nucleus pulposus scaffolds by electrospun nanofiber-reinforced hydrogels is discussed. Finally, complete intervertebral disc scaffolds can be fabricated using the disc-like angle-ply structure and other emerging fabrication methods. Taken together, electrospun nanofiber intervertebral disc scaffolds are promising for clinical applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI