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脊髓损伤管理的新进展:关于纳米技术新兴作用的叙述性综述

What Is New in Spinal Cord Injury Management: A Narrative Review on the Emerging Role of Nanotechnology.

作者信息

Raciti Loredana, Raciti Gianfranco, Calabrò Rocco Salvatore

机构信息

Unità Spinale Unipolare, Azienda Ospedaliera per le Emergenza Cannizzaro, 98102 Catania, Italy.

Physical Medicine and Rehabilitation, Department of Medical and Surgical Sciences, University of Catanzaro "Magna Graecia", 88100 Catanzaro, Italy.

出版信息

Biomedicines. 2025 Sep 5;13(9):2176. doi: 10.3390/biomedicines13092176.

Abstract

Traumatic injuries to the brain and spinal cord remain among the most challenging conditions in clinical neuroscience due to the complexity of repair mechanisms and the limited regenerative capacity of neural tissues. Nanotechnology has emerged as a transformative field, offering precise diagnostic tools, targeted therapeutic delivery systems, and advanced scaffolding platforms that are capable of overcoming the biological barriers to regeneration. This review summarizes the recent advances in nanoscale diagnostic markers, functionalized nanoparticles for drug delivery, and nanostructured scaffolds designed to modulate the injured microenvironment and support axonal regrowth and remyelination. Emerging evidence indicates that nanotechnology enables real-time, minimally invasive detection of inflammation, oxidative stress, and cellular damage, while improving therapeutic efficacy and reducing systemic side effects through targeted delivery. Electroconductive scaffolds and hybrid strategies that integrate electrical stimulation, gene therapy, and artificial intelligence further expand opportunities for personalized neuroregeneration. Despite these advances, significant challenges remain, including long-term safety, immune compatibility, the scalability of large-scale production, and translational barriers, such as small sample sizes, heterogeneous preclinical models, and limited follow-up in existing studies. Addressing these issues will be critical to realize the full potential of nanotechnology in traumatic brain and spinal cord injury and to accelerate the transition from promising preclinical findings to effective clinical therapies.

摘要

由于修复机制的复杂性和神经组织再生能力有限,脑和脊髓的创伤性损伤仍然是临床神经科学中最具挑战性的病症之一。纳米技术已成为一个变革性领域,提供精确的诊断工具、靶向治疗递送系统和先进的支架平台,能够克服再生的生物障碍。本综述总结了纳米级诊断标志物、用于药物递送的功能化纳米颗粒以及旨在调节损伤微环境并支持轴突再生和髓鞘再生的纳米结构支架的最新进展。新出现的证据表明,纳米技术能够实时、微创地检测炎症、氧化应激和细胞损伤,同时通过靶向递送提高治疗效果并减少全身副作用。整合电刺激、基因治疗和人工智能的导电支架和混合策略进一步拓展了个性化神经再生的机会。尽管取得了这些进展,但仍存在重大挑战,包括长期安全性、免疫相容性、大规模生产的可扩展性以及转化障碍,如样本量小、临床前模型异质性以及现有研究中随访有限等。解决这些问题对于实现纳米技术在创伤性脑损伤和脊髓损伤中的全部潜力以及加速从有前景的临床前研究结果向有效的临床治疗的转变至关重要。

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