Sawyer Stephen W, Zhang Kairui, Horton Jason A, Soman Pranav
Department of Biomedical and Chemical Engineering, Syracuse University, Syracuse, NY, USA.
Department of Orthopedic Surgery, SUNY Upstate Medical University, Syracuse, NY, USA.
AIMS Bioeng. 2020;7(2):91-105. doi: 10.3934/bioeng.2020009. Epub 2020 May 29.
In this work, we report on a perfusion-based co-culture system that could be used for bone tissue engineering applications. The model system is created using a combination of Primary Human Umbilical Vein Endothelial Cells (HUVECs) and osteoblast-like Saos-2 cells encapsulated within a Gelatin Methacrylate (GelMA)-collagen hydrogel blend contained within 3D printed, perfusable constructs. The constructs contain dual channels, within a custom-built bioreactor, that were perfused with osteogenic media for up to two weeks in order to induce mineral deposition. Mineral deposition in constructs containing only HUVECs, only Saos-2 cells, or a combination thereof was quantified by microCT to determine if the combination of endothelial cells and bone-like cells increased mineral deposition. Histological and fluorescent staining was used to verify mineral deposition and cellular function both along and between the perfused channels. While there was not a quantifiable difference in the amount of mineral deposited in Saos-2 only versus Saos-2 plus HUVEC samples, the location of the deposited mineral differed dramatically between the groups and indicated that the addition of HUVECs within the GelMA matrix allowed Saos-2 cells, in diffusion limited regions of the construct, to deposit bone mineral. This work serves as a model on how to create perfusable bone tissue engineering constructs using a combination of 3D printing and cellular co-cultures.
在这项工作中,我们报告了一种基于灌注的共培养系统,该系统可用于骨组织工程应用。该模型系统是通过将原代人脐静脉内皮细胞(HUVECs)和成骨样Saos-2细胞组合封装在明胶甲基丙烯酸酯(GelMA)-胶原蛋白水凝胶混合物中,并置于3D打印的可灌注构建体中创建的。这些构建体在定制的生物反应器中包含双通道,用成骨培养基灌注长达两周以诱导矿物质沉积。通过微型计算机断层扫描(microCT)对仅含HUVECs、仅含Saos-2细胞或其组合的构建体中的矿物质沉积进行定量,以确定内皮细胞和骨样细胞的组合是否增加了矿物质沉积。组织学和荧光染色用于验证灌注通道沿线和通道之间的矿物质沉积和细胞功能。虽然仅Saos-2组与Saos-2加HUVEC组中沉积的矿物质数量没有可量化的差异,但两组之间沉积矿物质的位置有显著差异,这表明在GelMA基质中添加HUVECs可使构建体扩散受限区域内的Saos-2细胞沉积骨矿物质。这项工作为如何结合3D打印和细胞共培养创建可灌注骨组织工程构建体提供了一个模型。