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Recent Progress of Fabrication of Cell Scaffold by Electrospinning Technique for Articular Cartilage Tissue Engineering

机译:电纺技术在关节软骨组织工程中制备细胞支架的研究进展

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As a versatile nanofiber manufacturing technique, electrospinning has been widely employed for the fabrication of tissue engineering scaffolds. Since the structure of natural extracellular matrices varies substantially in different tissues, there has been growing awareness of the fact that the hierarchical 3D structure of scaffolds may affect intercellular interactions, material transportation, fluid flow, environmental stimulation, and so forth. Physical blending of the synthetic and natural polymers to form composite materials better mimics the composition and mechanical properties of natural tissues. Scaffolds with element gradient, such as growth factor gradient, have demonstrated good potentials to promote heterogeneous cell growth and differentiation. Compared to 2D scaffolds with limited thicknesses, 3D scaffolds have superior cell differentiation and development rate. The objective of this review paper is to review and discuss the recent trends of electrospinning strategies for cartilage tissue engineering, particularly the biomimetic, gradient, and 3D scaffolds, along with future prospects of potential clinical applications.
机译:作为一种通用的纳米纤维制造技术,静电纺丝已被广泛用于组织工程支架的制造。由于天然细胞外基质的结构在不同组织中有很大不同,因此人们越来越意识到支架的3D分层结构可能影响细胞间的相互作用,物质运输,流体流动,环境刺激等事实。合成聚合物和天然聚合物的物理共混以形成复合材料更好地模拟了天然组织的组成和机械性能。具有元素梯度(例如生长因子梯度)的支架已显示出促进异种细胞生长和分化的良好潜力。与厚度受限的2D支架相比,3D支架具有优异的细胞分化和发育速率。本文的目的是回顾和讨论软骨组织工程电纺策略的最新趋势,尤其是仿生,梯度和3D支架,以及潜在的临床应用前景。

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