Kim Jueun, Choi Yeong-Jin, Gal Chang-Woo, Sung Aram, Park Honghyun, Yun Hui-Suk
Department of Advanced Materials Engineering, University of Science and Technology (UST), 217 Gajeon-ro, Yuseong-gu, Daejeon, South Korea.
Department of Advanced Biomaterials Research, Ceramic Materials Division, Korea Institute of Materials Science (KIMS), 797 Changwon-daero, Seongsan-gu, Changwon, South Korea.
Int J Bioprint. 2023 Jan 3;9(2):660. doi: 10.18063/ijb.v9i2.660. eCollection 2023.
Hydrogels are natural bioink options for cellular printing due to their high-water content and permeable three-dimensional (3D) polymeric structure, which are favorable for cellular anchoring and metabolic activities. To increase the functionality of hydrogels as bioinks, biomimetic components are often incorporated, such as proteins, peptides, and growth factors. In this study, we aimed to enhance the osteogenic activity of a hydrogel formulation by integrating both the release and retention of gelatin so that gelatin serves as both an indirect support for released ink component on cells nearby and a direct support for encapsulated cells inside a printed hydrogel, thereby fulfills two functions. Methacrylate-modified alginate (MA-alginate) was chosen as the matrix because it has a low cell adhesion effect due to the absence of ligands. The gelatin-containing MA-alginate hydrogel was fabricated, and gelatin was found to remain in the hydrogel for up to 21 days. The gelatin remaining in the hydrogel had positive effects on encapsulated cells, especially on cell proliferation and osteogenic differentiation. The gelatin released from the hydrogel affected the external cells, showing more favorable osteogenic behavior than the control sample. It was also found that the MA-alginate/gelatin hydrogel could be used as a bioink for printing with high cell viability. Therefore, we anticipate that the alginate-based bioink developed in this study could potentially be used to induce osteogenesis in bone tissue regeneration.
水凝胶因其高含水量和可渗透的三维(3D)聚合物结构,是细胞打印的天然生物墨水选择,有利于细胞锚定和代谢活动。为了提高水凝胶作为生物墨水的功能,通常会加入仿生成分,如蛋白质、肽和生长因子。在本研究中,我们旨在通过整合明胶的释放和保留来增强水凝胶配方的成骨活性,使明胶既作为对附近细胞上释放的墨水成分的间接支持,又作为对打印水凝胶内封装细胞的直接支持,从而实现两种功能。选择甲基丙烯酸酯改性藻酸盐(MA-藻酸盐)作为基质,因为它由于缺乏配体而具有低细胞粘附效应。制备了含明胶的MA-藻酸盐水凝胶,发现明胶在水凝胶中可保留长达21天。水凝胶中残留的明胶对封装细胞有积极影响,尤其是对细胞增殖和成骨分化。从水凝胶中释放的明胶影响外部细胞,显示出比对照样品更有利的成骨行为。还发现MA-藻酸盐/明胶水凝胶可作为具有高细胞活力的打印生物墨水。因此,我们预计本研究中开发的基于藻酸盐的生物墨水可能潜在地用于诱导骨组织再生中的成骨作用。