Zhang Bin, Cristescu Rodica, Chrisey Douglas B, Narayan Roger J
Joint Department of Biomedical Engineering, University of North Carolina and North Carolina State University, Raleigh, NC 27606, USA.
National Institute for Lasers, Plasma and Radiation Physics, Lasers Department, P.O. Box MG-36, Bucharest-Magurele, Romania.
Int J Bioprint. 2020 Jan 17;6(1):211. doi: 10.18063/ijb.v6i1.211. eCollection 2020.
Three-dimensional (3D) printing has been emerging as a new technology for scaffold fabrication to overcome the problems associated with the undesirable microstructure associated with the use of traditional methods. Solvent-based extrusion (SBE) 3D printing is a popular 3D printing method, which enables incorporation of cells during the scaffold printing process. The scaffold can be customized by optimizing the scaffold structure, biomaterial, and cells to mimic the properties of natural tissue. However, several technical challenges prevent SBE 3D printing from translation to clinical use, such as the properties of current biomaterials, the difficulties associated with simultaneous control of multiple biomaterials and cells, and the scaffold-to-scaffold variability of current 3D printed scaffolds. In this review paper, a summary of SBE 3D printing for tissue engineering (TE) is provided. The influences of parameters such as ink biomaterials, ink rheological behavior, cross-linking mechanisms, and printing parameters on scaffold fabrication are considered. The printed scaffold structure, mechanical properties, degradation, and biocompatibility of the scaffolds are summarized. It is believed that a better understanding of the scaffold fabrication process and assessment methods can improve the functionality of SBE-manufactured 3D printed scaffolds.
三维(3D)打印已成为一种用于制造支架的新技术,以克服与传统方法使用相关的不良微观结构问题。基于溶剂的挤出(SBE)3D打印是一种流行的3D打印方法,它能够在支架打印过程中引入细胞。通过优化支架结构、生物材料和细胞,可以定制支架以模拟天然组织的特性。然而,一些技术挑战阻碍了SBE 3D打印转化为临床应用,例如当前生物材料的特性、同时控制多种生物材料和细胞的困难以及当前3D打印支架的支架间变异性。在这篇综述文章中,提供了用于组织工程(TE)的SBE 3D打印的总结。考虑了诸如墨水生物材料、墨水流变行为、交联机制和打印参数等参数对支架制造的影响。总结了打印支架的结构、力学性能、降解和生物相容性。相信更好地理解支架制造过程和评估方法可以提高SBE制造的3D打印支架的功能。