Hasanzadeh Elham, Seifalian Alexander, Mellati Amir, Saremi Jamileh, Asadpour Shiva, Enderami Seyed Ehsan, Nekounam Houra, Mahmoodi Narges
Immunogenetics Research Center, Department of Tissue Engineering & Regenerative Medicine, School of Advanced Technologies in Medicine, Mazandaran University of Medical Sciences, Sari, Iran.
Nanotechnology & Regenerative Medicine Commercialisation Centre (NanoRegMed Ltd, Nanoloom Ltd, & Liberum Health Ltd), London BioScience Innovation Centre, 2 Royal College Street, London, UK.
Mater Today Bio. 2023 Mar 22;20:100614. doi: 10.1016/j.mtbio.2023.100614. eCollection 2023 Jun.
Repairing central nervous system (CNS) is difficult due to the inability of neurons to recover after damage. A clinically acceptable treatment to promote CNS functional recovery and regeneration is currently unavailable. According to recent studies, injectable hydrogels as biodegradable scaffolds for CNS tissue engineering and regeneration have exceptionally desirable attributes. Hydrogel has a biomimetic structure similar to extracellular matrix, hence has been considered a 3D scaffold for CNS regeneration. An interesting new type of hydrogel, injectable hydrogels, can be injected into target areas with little invasiveness and imitate several aspects of CNS. Injectable hydrogels are being researched as therapeutic agents because they may imitate numerous properties of CNS tissues and hence reduce subsequent injury and regenerate neural tissue. Because of their less adverse effects and cost, easier use and implantation with less pain, and faster regeneration capacity, injectable hydrogels, are more desirable than non-injectable hydrogels. This article discusses the pathophysiology of CNS and the use of several kinds of injectable hydrogels for brain and spinal cord tissue engineering, paying particular emphasis to recent experimental studies.
由于神经元在受损后无法恢复,修复中枢神经系统(CNS)很困难。目前尚无促进中枢神经系统功能恢复和再生的临床可接受治疗方法。根据最近的研究,可注射水凝胶作为用于中枢神经系统组织工程和再生的可生物降解支架具有特别理想的特性。水凝胶具有类似于细胞外基质的仿生结构,因此被认为是中枢神经系统再生的三维支架。一种有趣的新型水凝胶,即可注射水凝胶,可以微创地注射到目标区域,并模仿中枢神经系统的几个方面。可注射水凝胶正在作为治疗剂进行研究,因为它们可以模仿中枢神经系统组织的许多特性,从而减少后续损伤并使神经组织再生。由于其副作用较小、成本较低、使用和植入更容易且疼痛较小以及再生能力更快,可注射水凝胶比不可注射水凝胶更可取。本文讨论了中枢神经系统的病理生理学以及几种可注射水凝胶在脑和脊髓组织工程中的应用,特别强调了最近的实验研究。