Stocco Elena, Barbon Silvia, Zamuner Annj, Confalonieri Marta, Tiengo Cesare, De Caro Raffaele, Macchi Veronica, Dettin Monica, Porzionato Andrea
Section of Human Anatomy, Department of Neuroscience, University of Padova, Padova, Italy.
Department of Women's and Children's Health, University of Padova, Padova, Italy.
Front Cell Dev Biol. 2025 Aug 13;13:1637189. doi: 10.3389/fcell.2025.1637189. eCollection 2025.
Effective nerve conduits development remains a significant challenge in regenerative medicine, with the potential to greatly improve patients' quality of life in case of peripheral nerve injury. To date, several tubular devices have been introduced into clinical practice; however, the outcomes remain suboptimal. As empty conduits, lacking internal guidance structures or bioactive elements, they provide minimal support for nerve regeneration and fail especially in cases of long-gap nerve injuries. In this scenario, intense research efforts are directed toward improving conduit-associated results . Among the most promising strategies, the addition of luminal fillers has shown great potential in creating favorable microenvironment for axonal growth and tissue remodeling. Considering the many luminal fillers explored and reported in the literature, Self-Assembling Peptides (SAPs) have achieved significant attention by the scientific community due to their unique ability to arrange into biocompatible, extracellular matrix-like hydrogels that can favorably support axons and Schwann cells regeneration and organization within the conduit, guiding growth toward the distal stump. This review focuses on the use of SAP-based hydrogels as luminal fillers for sciatic nerve repair, summarizing the most relevant findings and highlighting their potential to enhance nerve regeneration.
有效的神经导管开发仍然是再生医学中的一项重大挑战,对于周围神经损伤患者而言,其具有极大改善生活质量的潜力。迄今为止,已有多种管状装置应用于临床实践;然而,治疗效果仍不尽人意。作为空导管,缺乏内部引导结构或生物活性元件,它们为神经再生提供的支持极少,尤其在长间隙神经损伤的情况下效果不佳。在这种情况下,大量研究致力于改善与导管相关的治疗结果。在最具前景的策略中,添加管腔填充物在为轴突生长和组织重塑创造有利微环境方面显示出巨大潜力。考虑到文献中探索和报道的众多管腔填充物,自组装肽(SAPs)因其独特能力而受到科学界的高度关注,这种能力使其能够排列成生物相容性的、类似细胞外基质的水凝胶,从而能够在导管内良好地支持轴突和雪旺细胞的再生与组织形成,引导其向远端残端生长。本综述聚焦于基于自组装肽的水凝胶作为坐骨神经修复管腔填充物的应用,总结最相关的研究发现,并突出其增强神经再生的潜力。