School of Materials Science and Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju 61005, Republic of Korea.
Department of Nature-Inspired Nanoconvergence Systems, Korea Institute of Machinery and Materials (KIMM), Daejeon 34103, Republic of Korea.
Nanoscale. 2019 Dec 28;11(48):23275-23285. doi: 10.1039/c9nr07643c. Epub 2019 Nov 29.
Three-dimensional (3D) cell printing is a versatile technique enabling the creation of 3D constructs containing hydrogel and cells in the desired shape or pattern. Bioinks exhibiting appropriate mechanical properties and biological activities to support cell growth and/or differentiation toward a specific lineage play critical roles in 3D cell printing and tissue engineering applications. Herein, we explored alginate/graphene oxide (GO) composites as bioinks for their potential to improve printability, structural stability, and osteogenic activities for osteogenic tissue engineering applications. The addition of GO (0.05-1.0 mg mL) to 3% alginate significantly enhanced the printing performances of the alginate bioink. In addition, mesenchymal stem cells (MSCs) printed with alginate/GO showed good proliferation and higher survival in an oxidative stress environment. The 3D scaffolds printed with MSCs and alginate/GO demonstrated significantly enhanced osteogenic differentiation compared with those printed with MSCs and alginate. Overall, a bioink of 3% alginate and 0.5 mg mL GO showed the most balanced characteristics in terms of printability, structural stability, and osteogenic induction of the printed MSCs. Alginate/GO composite bioinks will be useful for bioprinting research for various tissue engineering applications.
三维(3D)细胞打印是一种多功能技术,能够创建具有所需形状或图案的水凝胶和细胞的 3D 结构。在 3D 细胞打印和组织工程应用中,具有适当机械性能和生物活性以支持细胞生长和/或向特定谱系分化的生物墨水发挥着关键作用。本文中,我们探索了海藻酸盐/氧化石墨烯(GO)复合材料作为生物墨水的潜力,以提高其用于骨组织工程应用的可打印性、结构稳定性和成骨活性。将 GO(0.05-1.0 mg mL)添加到 3%的海藻酸盐中显著提高了海藻酸盐生物墨水的打印性能。此外,与用海藻酸盐打印的间充质干细胞(MSCs)相比,用海藻酸盐/GO 打印的 MSCs 在氧化应激环境中显示出良好的增殖和更高的存活率。与用 MSCs 和海藻酸盐打印的支架相比,用 MSCs 和海藻酸盐/GO 打印的 3D 支架表现出明显增强的成骨分化。总体而言,在可打印性、结构稳定性和成骨诱导方面,3%的海藻酸盐和 0.5 mg mL 的 GO 的生物墨水表现出最平衡的特性。海藻酸盐/GO 复合生物墨水将有助于各种组织工程应用的生物打印研究。