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创伤性脊髓损伤后有效神经再生的多功能治疗递送策略

Multifunctional therapeutic delivery strategies for effective neuro-regeneration following traumatic spinal cord injury.

作者信息

Kumar Pradeep, Choonara Yahya E, Modi Girish, Naidoo Dinesh, Pillay Viness

机构信息

Wits Advanced Drug Delivery Platform Research Unit, Department of Pharmacy and Pharmacology, School of Therapeutic Sciences, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, 7 York Road, Park town, 2193, South Africa.

出版信息

Curr Pharm Des. 2015;21(12):1517-28. doi: 10.2174/1381612821666150115152323.

Abstract

Traumatic Spinal Cord Injuries (TSCI), due to their devastating nature, present several interventional challenges (extensive inflammation, axonal tethering, scar formation, neuronal degeneration and functional loss) that need to be addressed before even a slight neuronal recovery can be achieved. Recent post-TSCI investigational approaches include a combination of "support and therapeutic" strategies capable of providing localized delivery of therapeutic molecules along with specialized architecture to allow axonal growth and conformal repair. This review provides a brief overview of multifunctional therapeutic delivery strategies for effective neuroregeneration post-TSCI with special emphasis on intrathecal hydrogel-based injectable systems, chondroitinase ABC releasing matrices, micro/nano-sized particulate strategies, 3D-scaffold architectures, biopolymeric channeled bridges for directed neuronal growth, functionalized nerve conduits, nano- and micro-fibrous scaffolds and multicomponent combinatorial paradigms for localized delivery to spinal cord. In addition; a comprehensive account of most widely employed macromolecules and the related neuro-pharmacological, -anatomical, and -functionaloutcomes conferred by the abovementioned neural tissue engineering approaches is provided. Furthermore, the performance of individual delivery systems towards the enhancement of effectiveness, efficiency, and stability of therapeutic molecules and neurotrophic factors is discussed. In conclusion, it is suggested that a multifunctional combinatorial device assimilating the biomaterial, cellular, molecular, structural and functional aspects altogether is the best way forward for effective neuroregeneration post-TSCI.

摘要

创伤性脊髓损伤(TSCI)因其具有毁灭性的本质,带来了诸多介入治疗挑战(广泛炎症、轴突束缚、瘢痕形成、神经元变性和功能丧失),在实现哪怕轻微的神经元恢复之前,这些挑战都需要得到解决。近期创伤性脊髓损伤后的研究方法包括“支持与治疗”策略的组合,这些策略能够实现治疗分子的局部递送,并具备特殊结构以促进轴突生长和适应性修复。本综述简要概述了创伤性脊髓损伤后有效神经再生的多功能治疗递送策略,特别强调基于鞘内水凝胶的可注射系统、释放软骨素酶ABC的基质、微/纳米颗粒策略、三维支架结构、用于定向神经元生长的生物聚合物通道桥、功能化神经导管、纳米和微纤维支架以及用于脊髓局部递送的多组分组合模式。此外,还全面介绍了最广泛使用的大分子以及上述神经组织工程方法所带来的相关神经药理学、神经解剖学和神经功能学结果。此外,还讨论了各个递送系统在提高治疗分子和神经营养因子的有效性、效率和稳定性方面的性能。总之,建议将生物材料、细胞、分子、结构和功能等方面整合在一起的多功能组合装置是创伤性脊髓损伤后有效神经再生的最佳前进方向。

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