Koo YoungWon, Kim Geun Hyung
Department of Biomechatronic Engineering, College of Biotechnology and Bioengineering Sungkyunkwan University (SKKU) Suwon Republic of Korea.
Biomedical Institute for Convergence at SKKU (BICS) Sungkyunkwan University Suwon Republic of Korea.
Bioeng Transl Med. 2022 Apr 28;7(3):e10330. doi: 10.1002/btm2.10330. eCollection 2022 Sep.
Extrusion-based bioprinting is one of the most effective methods for fabricating cell-laden mesh structures. However, insufficient cellular activities within the printed cylindrical cell-matrix blocks, inducing low cell-to-cell interactions due to the disturbance of the matrix hydrogel, remain to be addressed. Hence, various sacrificial materials or void-forming methods have been used; however, most of them cannot solve the problem completely or require complicated fabricating procedures. Herein, we suggest a bioprinted cell-laden collagen/hydroxyapatite (HA) construct comprising meringue-like porous cell-laden structures to enhance osteogenic activity. A porous bioink is generated using a culinary process, i.e., the whipping method, and the whipping conditions, such as the material concentration, time, and speed, are selected appropriately. The constructs fabricated using the meringue-like bioink with MG63 cells and human adipose stem cells exhibit outstanding metabolic and osteogenic activities owing to the synergistic effects of the efficient cell-to-cell interactions and HA stimulation released from the porous structure. The in vitro cellular responses indicate that the meringue-like collagen bioink for achieving an extremely porous cell-laden construct can be a highly promising cell-laden material for various tissue regeneration applications.
基于挤压的生物打印是制造载有细胞的网状结构最有效的方法之一。然而,打印的圆柱形细胞-基质块内细胞活性不足,由于基质水凝胶的干扰导致细胞间相互作用较低,这一问题仍有待解决。因此,人们使用了各种牺牲材料或成孔方法;然而,它们中的大多数不能完全解决问题,或者需要复杂的制造程序。在此,我们提出一种生物打印的载有细胞的胶原蛋白/羟基磷灰石(HA)构建体,其包含类似蛋白酥皮的多孔载有细胞的结构,以增强成骨活性。使用烹饪过程,即搅拌法生成多孔生物墨水,并适当选择搅拌条件,如材料浓度、时间和速度。使用含有MG63细胞和人脂肪干细胞的类似蛋白酥皮的生物墨水制造的构建体,由于高效的细胞间相互作用和从多孔结构中释放的HA刺激的协同作用,表现出出色的代谢和成骨活性。体外细胞反应表明,用于实现具有极高孔隙率的载有细胞的构建体的类似蛋白酥皮的胶原蛋白生物墨水可能是用于各种组织再生应用的极具前景的载有细胞的材料。