Electrospinning, a technique used to fabricate fibrous scaffolds, has gained popularity in recent years as a method to produce tissue engineered grafts with architectural similarities to the extracellular matrix. Beyond its versatility in material selection, electrospinning also provides many tools to tune the fiber morphology and scaffold geometry. Recent efforts have focused on extending the capabilities of electrospinning to produce scaffolds that better recapitulate tissue properties and enhance regeneration. This review highlights these advancements by providing an overview of the processing variables and setups used to modulate scaffold architecture, discussing strategies to improve cellular infiltration and guide cell behavior, and providing a summary of electrospinning applications in tissue engineering. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2892-2905, 2017.

译文

:静电纺丝技术是一种用于制造纤维支架的技术,近年来作为生产与细胞外基质在结构上相似的组织工程移植物的一种方法而受到欢迎。除了在材料选择方面的多功能性之外,静电纺丝还提供许多工具来调整纤维的形态和支架的几何形状。最近的努力集中在扩展静电纺丝的能力上,以生产更好地概括组织特性并增强再生的支架。这篇综述通过概述用于调节支架结构的加工变量和设置,讨论了改善细胞浸润和指导细胞行为的策略,并提供了电纺技术在组织工程中的应用概述,突出了这些进展。分级为4 +©2017 Wiley Periodicals,Inc.J Biomed Mater Res Part A:105A:2892-2905,2017。

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