a Division of Biomedical Engineering, College of Engineering , University of Saskatchewan , Saskatoon , Canada.
b Department of Surgery, College of Medicine , University of Saskatchewan , Saskatoon , Canada.
J Biomater Sci Polym Ed. 2018 Jul;29(10):1126-1154. doi: 10.1080/09205063.2018.1433420. Epub 2018 Feb 21.
Three dimensional (3D) bioplotting requires appropriate crosslinkers to crosslink the hydrogel precursor while simultaneously maintaining the viability of embedded cells. However, the evaluation and comparison of various types of crosslinkers in bioplotting remains underexplored to date. This paper presents our study of the influence of three ionic crosslinkers-calcium chloride (CaCl), barium chloride (BaCl), and zinc chloride (ZnCl)-on the mechanical and biological properties of 3D bioplotted alginate scaffolds. The scaffold mechanical properties characterized included the elastic modulus, swelling, and degradation while the biological properties considered included Schwann cell viability and surface morphology. The mechanical and biological properties of the bioplotted scaffolds were both dependent on the crosslinkers used for fabrication; specifically, crosslinking ions resulted in the elastic modulus of the hydrogels decreasing in the order BaCl>CaCl>ZnCl over 42 days while Schwann cell viability decreased in the order CaCl>BaCl>ZnCl over 7 days. Taken together, these results offer insights that are effective in terms of manipulating the 3D bioplotting process so as to tune and optimize the mechanical and biological performance of the plotted scaffolds for tissue engineering applications.
三维(3D)生物打印需要合适的交联剂来交联水凝胶前体,同时保持嵌入细胞的活力。然而,迄今为止,生物打印中各种类型交联剂的评估和比较仍未得到充分探索。本文研究了三种离子交联剂-氯化钙(CaCl)、氯化钡(BaCl)和氯化锌(ZnCl)-对 3D 生物打印海藻酸盐支架的机械和生物性能的影响。所研究的支架机械性能包括弹性模量、溶胀和降解,而所考虑的生物性能包括许旺细胞活力和表面形态。生物打印支架的机械和生物性能都取决于用于制造的交联剂;具体而言,交联离子导致水凝胶的弹性模量在 42 天内按 BaCl>CaCl>ZnCl 的顺序降低,而许旺细胞活力在 7 天内按 CaCl>BaCl>ZnCl 的顺序降低。综上所述,这些结果为操纵 3D 生物打印过程提供了有价值的见解,可用于调整和优化绘制支架的机械和生物性能,以满足组织工程应用的需求。