Han Shanying, Zhao Xiaolong, Cheng Lin, Fan Jiangang
Department of Otolaryngology Head and Neck Surgery, Sichuan Provincial People's Hospital, University of Electronic Science and Technology of China Chengdu 610072, Sichuan, China.
Am J Stem Cells. 2024 Feb 25;13(1):1-26. doi: 10.62347/WMDZ8890. eCollection 2024.
Neural tissue engineering as alternatives to recover damaged tissues and organs is getting more and more attention due to the lack of regeneration ability of natural tissue nervous system after injury. Particularly, topographic scaffolds are one of the critical elements to guide nerve orientation and reconnection with characteristics of mimic the natural extracellular matrix. This review focuses on scaffolds preparation technologies, topographical features, scaffolds-based encapsulations delivery strategies for neural tissue regeneration, biological functions on nerve cell guidance and regeneration, and applications of topographic scaffolds in vivo and in vitro. Here, the recent developments in topographic scaffolds for neural tissue engineering by simulating neural cell topographic orientation and differentiation are presented. We also explore the challenges and future perspectives of topographical scaffolds in clinical trials and practical applications.
由于天然组织神经系统损伤后缺乏再生能力,神经组织工程作为恢复受损组织和器官的替代方法正受到越来越多的关注。特别是,具有模拟天然细胞外基质特征的拓扑支架是引导神经定向和重新连接的关键要素之一。本文综述了用于神经组织再生的支架制备技术、拓扑特征、基于支架的封装递送策略、对神经细胞引导和再生的生物学功能以及拓扑支架在体内和体外的应用。在此,介绍了通过模拟神经细胞拓扑定向和分化用于神经组织工程的拓扑支架的最新进展。我们还探讨了拓扑支架在临床试验和实际应用中的挑战和未来前景。