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Ile-Lys-Val-ala-Val (IKVAV) peptide for neuronal tissue engineering

机译:Avy-Lis-Wall-all-Wall(IQWAV)肽用于Navronol组织工程

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摘要

Despite the great advances in microsurgery, some neural injuries cannot be treated surgically. Stem cell therapy is a potential approach for treating neuroinjuries and neurodegenerative disease. Researchers have developed various bioactive scaffolds for tissue engineering, exhibiting enhanced cell viability, attachment, migration, neurite elongation, and neuronal differentiation, with the aim of developing functional tissue grafts that can be incorporated in vivo. Facilitating the appropriate interactions between the cells and extracellular matrix is crucial in scaffold design. Modification of scaffolds with biofunctional motifs such as growth factors, drugs, or peptides can improve this interaction. In this review, we focus on the laminin-derived Ile-Lys-Val-Ala-Val peptide as a biofunctional epitope for neuronal tissue engineering. Inclusion of this bioactive peptide within a scaffold is known to enhance cell adhesion as well as neuronal differentiation in both 2-dimensional and 3-dimensional environments. The in vivo application of this peptide is also briefly described.
机译:尽管在显微外科的进展情况下,但无法手术治疗一些神经损伤。干细胞疗法是治疗神经内枢纽和神经变性疾病的潜在方法。研究人员开发了用于组织工程的各种生物活性支架,表现出增强的细胞活力,附着,迁移,神经凝胶伸长和神经元分化,目的是开发可以在体内掺入的功能组织移植物。促进细胞与细胞外基质之间的适当相互作用在支架设计中至关重要。用生生物体,药物或肽等生物功能基序的修改可以改善这种相互作用。在该评论中,我们专注于层粘连蛋白衍生的ILE-LYS-VAL-ALA-VAL肽作为​​神经元组织工程的生物功能表位。已知在支架内包含这种生物活性肽,用于增强细胞粘附以及二维和三维环境中的神经元分化。还简要描述了该肽的体内应用。

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