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Strategies to Tune Electrospun Scaffold Porosity for Effective Cell Response in Tissue Engineering

机译:调整静电纺丝支架孔隙率的策略以有效地响应组织工程中的细胞。

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摘要

Tissue engineering aims to develop artificial human tissues by culturing cells on a scaffold in the presence of biochemical cues. Properties of scaffold such as architecture and composition highly influence the overall cell response. Electrospinning has emerged as one of the most affordable, versatile, and successful approaches to develop nonwoven nano/microscale fibrous scaffolds whose structural features resemble that of the native extracellular matrix. However, dense packing of the fibers leads to small-sized pores which obstruct cell infiltration and therefore is a major limitation for their use in tissue engineering applications. To this end, a variety of approaches have been investigated to enhance the pore properties of the electrospun scaffolds. In this review, we collect state-of-the-art modification methods and summarize them into six classes as follows: approaches focused on optimization of packing density by (a) conventional setup, (b) sequential or co-electrospinning setups, (c) involving sacrificial elements, (d) using special collectors, (e) post-production processing, and (f) other specialized methods. Overall, this review covers historical as well as latest methodologies in the field and therefore acts as a quick reference for those interested in electrospinning matrices for tissue engineering and beyond.
机译:组织工程的目的是通过在生化线索存在下在支架上培养细胞来开发人造人类组织。支架的性质(例如结构和组成)在很大程度上影响总体细胞反应。电纺丝已经成为开发结构特征类似于天然细胞外基质的非织造纳米/微米级纤维状支架的最实惠,用途最广泛且成功的方法之一。但是,纤维的密集堆积导致小孔阻塞了细胞的浸润,因此是其在组织工程应用中使用的主要限制。为此,已经研究了多种方法来增强电纺支架的孔性能。在本文中,我们收集了最新的改性方法,并将其归纳为以下六类:通过(a)常规设置,(b)顺序或共电纺丝设置,(c )涉及牺牲元素,(d)使用特殊的收集器,(e)后期制作处理,以及(f)其他专门方法。总体而言,本综述涵盖了该领域的历史方法和最新方法,因此对于那些对组织工程及其他领域的电纺丝基质感兴趣的人员可以作为快速参考。

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