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Solution-Based Processing for Scaffold Fabrication in Tissue Engineering Applications: A Brief Review

机译:基于解决方案的组织工程应用中的脚手架制造的处理:简要审查

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摘要

The fabrication of 3D scaffolds is under wide investigation in tissue engineering (TE) because of its incessant development of new advanced technologies and the improvement of traditional processes. Currently, scientific and clinical research focuses on scaffold characterization to restore the function of missing or damaged tissues. A key for suitable scaffold production is the guarantee of an interconnected porous structure that allows the cells to grow as in native tissue. The fabrication techniques should meet the appropriate requirements, including feasible reproducibility and time- and cost-effective assets. This is necessary for easy processability, which is associated with the large range of biomaterials supporting the use of fabrication technologies. This paper presents a review of scaffold fabrication methods starting from polymer solutions that provide highly porous structures under controlled process parameters. In this review, general information of solution-based technologies, including freeze-drying, thermally or diffusion induced phase separation (TIPS or DIPS), and electrospinning, are presented, along with an overview of their technological strategies and applications. Furthermore, the differences in the fabricated constructs in terms of pore size and distribution, porosity, morphology, and mechanical and biological properties, are clarified and critically reviewed. Then, the combination of these techniques for obtaining scaffolds is described, offering the advantages of mimicking the unique architecture of tissues and organs that are intrinsically difficult to design.
机译:3D支架的制造是在组织工程(TE)的广泛调查,因为其新的先进技术的不断发展和传统过程的改进。目前,科学和临床研究侧重于脚手架表征,以恢复缺失或受损组织的功能。合适的支架生产的钥匙是保证互连的多孔结构,其允许细胞在天然组织中生长。制造技术应符合适当的要求,包括可行的再现性和时间和经济高效的资产。这对于易于加工性是必要的,这与支持使用制造技术的大量生物材料相关联。本文介绍了从聚合物溶液开始的支架制造方法,该方法在受控工艺参数下提供高度多孔结构。在本文中,提出了基于解决方案的技术的一般信息,包括冷冻干燥,热或扩散诱导的相分离(尖端或尖端),以及静电纺丝以及其技术策略和应用的概述。此外,在孔径和分布,孔隙率,形态和机械和生物学方面,阐明和批评的构建体的差异。然后,描述了用于获得支架的这些技术的组合,提供了模仿本质上难以设计的织组织和器官的独特架构的优点。

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