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Fabrication of large pores in electrospun nanofibrous scaffolds for cellular infiltration: A review

机译:静电纺丝纳米纤维支架中大孔的制备用于细胞浸润的研究进展

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摘要

In the past decade, considerable effort has been made to construct biomimetic scaffolds from electrospun nanofibers for engineering different tissues. However, one of the major concerns with electrospun nanofibrous scaffolds is that the densely arranged architecture of fibers and small pores or voids between fibers hinder efficient cellular infiltration or prevent three dimensional (3D) cellular integration with host tissue in vivo after implantation. To overcome this problem, many concepts or strategies applicable during the electrospinning or post-electrospinning procedures have been proposed to enlarge pore size of electrospun scaffolds. This article addresses the issues of pore geometry and cellular infiltration of electrospun scaffolds, and first reviews the fabrication solutions/approaches applied to achieve larger micropores in electrospun mats. The evidence and potential for fostering cellular infiltration using these improved porous scaffolds are then discussed. Finally, it is hoped that this will enable us to better exploit viable technologies or develop new ones for constructing ideal nanofibrous architecture for fulfilling specific tissue engineering needs.
机译:在过去的十年中,已经做出了相当大的努力从电纺纳米纤维构建仿生支架,以工程化不同的组织。然而,电纺纳米纤维支架的主要关注之一是纤维的密集排列的结构以及纤维之间的小孔或空隙阻碍了有效的细胞浸润或阻止了植入后体内与宿主组织的三维(3D)细胞整合。为了克服该问题,已经提出了在静电纺丝或静电纺丝后的过程中适用的许多概念或策略,以增大静电纺丝支架的孔径。本文讨论了电纺支架的孔几何结构和细胞浸润的问题,并首先回顾了为实现电纺垫中更大的微孔而应用的制造解决方案/方法。然后讨论了使用这些改良的多孔支架促进细胞浸润的证据和潜力。最后,希望这将使我们能够更好地利用可行的技术或开发新的技术,以构建理想的纳米纤维架构,以满足特定的组织工程需求。

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