Behtaj Sanaz, St John James A, Ekberg Jenny A K, Rybachuk Maksym
Clem Jones Centre for Neurobiology and Stem Cell Research, Griffith University, Queensland; Menzies Health Institute Queensland, Griffith University, Southport, Australia.
Clem Jones Centre for Neurobiology and Stem Cell Research, Griffith University, Queensland; Menzies Health Institute Queensland, Griffith University, Southport; Griffith Institute for Drug Discovery, Nathan, Australia.
Neural Regen Res. 2022 Sep;17(9):1893-1897. doi: 10.4103/1673-5374.329003.
The nerves of the peripheral nervous system are not able to effectively regenerate in cases of severe neural injury. This can result in debilitating consequences, including morbidity and lifelong impairments affecting the quality of the patient's life. Recent findings in neural tissue engineering have opened promising avenues to apply fibrous tissue-engineered scaffolds to promote tissue regeneration and functional recovery. These scaffolds, known as neural scaffolds, are able to improve neural regeneration by playing two major roles, namely, by being a carrier for transplanted peripheral nervous system cells or biological cues and by providing structural support to direct growing nerve fibers towards the target area. However, successful implementation of scaffold-based therapeutic approaches calls for an appropriate design of the neural scaffold structure that is capable of up- and down-regulation of neuron-scaffold interactions in the extracellular matrix environment. This review discusses the main challenges that need to be addressed to develop and apply fibrous tissue-engineered scaffolds in clinical practice. It describes some promising solutions that, so far, have shown to promote neural cell adhesion and growth and a potential to repair peripheral nervous system injuries.
在严重神经损伤的情况下,外周神经系统的神经无法有效地再生。这可能导致使人衰弱的后果,包括发病率以及影响患者生活质量的终身损伤。神经组织工程学的最新研究成果开辟了一些有前景的途径,可应用纤维组织工程支架来促进组织再生和功能恢复。这些支架被称为神经支架,能够通过发挥两个主要作用来促进神经再生,即作为移植的外周神经系统细胞或生物信号的载体,并为引导生长中的神经纤维朝向目标区域提供结构支持。然而,基于支架的治疗方法的成功实施需要对神经支架结构进行适当设计,使其能够在细胞外基质环境中上调和下调神经元与支架的相互作用。本文综述讨论了在临床实践中开发和应用纤维组织工程支架需要解决的主要挑战。它描述了一些有前景的解决方案,这些方案迄今为止已显示出能促进神经细胞粘附和生长,并具有修复外周神经系统损伤的潜力。