Department of Spinal Surgery, Qingdao Huangdao Central Hospital, Qingdao University Medical Group, Qingdao 266555, P. R. China.
College of Chemistry and Chemical Engineering, Qingdao University, 266071 Qingdao, P. R. China.
J Mater Chem B. 2024 Feb 28;12(9):2253-2273. doi: 10.1039/d4tb00019f.
The injury of both central and peripheral nervous systems can result in neurological disorders and severe nervous diseases, which has been one of the challenges in the medical field. The use of peptide-based hydrogels for nerve repair and regeneration (NRR) provides a promising way for treating these problems, but the effects of the functions of peptide hydrogels on the NRR efficiency have been not understood clearly. In this review, we present recent advances in the material design, matrix fabrication, functional tailoring, and NRR applications of three types of peptide-based hydrogels, including pure peptide hydrogels, other component-functionalized peptide hydrogels, and peptide-modified polymer hydrogels. The case studies on the utilization of various peptide-based hydrogels for NRR are introduced and analyzed, in which the effects and mechanisms of the functions of hydrogels on NRR are illustrated specifically. In addition, the fabrication of medical NRR scaffolds and devices for pre-clinical application is demonstrated. Finally, we provide potential directions on the development of this promising topic. This comprehensive review could be valuable for readers to know the design and synthesis strategies of bioactive peptide hydrogels, as well as their functional tailoring, in order to promote their practical applications in tissue engineering, biomedical engineering, and materials science.
中枢和周围神经系统的损伤均可导致神经紊乱和严重的神经疾病,这一直是医学领域的挑战之一。基于肽的水凝胶在神经修复和再生 (NRR) 中的应用为治疗这些问题提供了一种有前途的方法,但肽水凝胶的功能对 NRR 效率的影响尚不清楚。在这篇综述中,我们介绍了三种类型的基于肽的水凝胶的材料设计、基质制造、功能修饰和 NRR 应用方面的最新进展,包括纯肽水凝胶、其他成分功能化的肽水凝胶和肽修饰的聚合物水凝胶。介绍和分析了利用各种基于肽的水凝胶进行 NRR 的案例研究,具体说明了水凝胶的功能对 NRR 的影响和机制。此外,还展示了用于临床前应用的医学 NRR 支架和装置的制造。最后,我们为这一有前途的课题的发展提供了潜在的方向。本综述对于读者了解生物活性肽水凝胶的设计和合成策略以及它们的功能修饰,以促进它们在组织工程、生物医学工程和材料科学中的实际应用具有重要价值。