Oriented Microstructure in Neural Tissue Engineering: A Review

F. Ghorbani, A. Zamanian
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引用次数: 8

Abstract

Regeneration of neural injuries by formation of new axons and myelination to improve quality of patient life is undeniable difficulty in the world in which scientists examined different strategies from ancient times. Recently, 3D tissue engineering scaffolds simulated original extracellular matrix (ECM) and provide desirable substrate for cellular attachment, proliferation and differentiation. However, similarity of scaffold’s materials to ECM contaminant is effective in achieving better results. Investigations demonstrated that oriented fibers, pores and unidirectional channels or conduits act as cell guidance and showed significant effect on cellular differentiation and axonal reconstruction. Between all the methods of scaffold fabrication, freeze casting provides lamellar type and controlled pores that are necessary in neural tissue engineering. In brief, designing scaffolds with oriented structure such as freeze casting with unidirectional solidification and seeding an appropriate cell before implantation improve repair process of neural damages.
神经组织工程中的定向微结构研究进展
通过形成新的轴突和髓鞘来再生神经损伤以提高患者的生活质量是世界上不可否认的困难,科学家们从古代开始就研究了不同的策略。近年来,三维组织工程支架模拟了原始细胞外基质(ECM),为细胞附着、增殖和分化提供了理想的基质。然而,支架材料与ECM污染物的相似性是获得更好效果的有效途径。研究表明,定向纤维、孔隙和单向通道或导管在细胞分化和轴突重建中起着重要的引导作用。在所有的支架制造方法中,冷冻铸造提供了神经组织工程中所必需的层状类型和受控孔隙。简而言之,设计定向结构的支架,如单向凝固的冷冻铸造,在植入前播种合适的细胞,可以改善神经损伤的修复过程。
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