Lee Sungmin, Son Minjae, Lee Juo, Byun Iksong, Kim Jin-Woo, Kim Jungsil, Seonwoo Hoon
Department of Human Harmonized Robotics, College of Engineering, Sunchon National University, Suncheon 57922, Republic of Korea.
Interdisciplinary Program in IT-Bio Convergence System, Sunchon National University, Suncheon 57922, Republic of Korea.
Polymers (Basel). 2024 Apr 18;16(8):1137. doi: 10.3390/polym16081137.
Three-dimensional microextrusion bioprinting technology uses pneumatics, pistons, or screws to transfer and extrude bioinks containing biomaterials and cells to print biological tissues and organs. Computational fluid dynamics (CFD) analysis can simulate the flow characteristics of bioinks in a control volume, and the effect on cell viability can be predicted by calculating the physical quantities. In this study, we developed an analysis system to predict the effect of a screw-based dispenser system (SDS) on cell viability in bioinks through rheological and CFD analyses. Furthermore, carboxymethylcellulose/alginate-based bioinks were used for the empirical evaluation of high-viscous bioinks. The viscosity of bioinks was determined by rheological measurement, and the viscosity coefficient for the CFD analysis was derived from a correlation equation by non-linear regression analysis. The mass flow rate derived from the analysis was successfully validated by comparison with that from the empirical evaluation. Finally, the cell viability was confirmed after bioprinting with bioinks containing C2C12 cells, suggesting that the developed SDS may be suitable for application in the field of bioengineering. Consequently, the developed bioink analysis system is applicable to a wide range of systems and materials, contributing to time and cost savings in the bioengineering industry.
三维微挤压生物打印技术利用气动装置、活塞或螺杆来转移和挤压含有生物材料和细胞的生物墨水,以打印生物组织和器官。计算流体动力学(CFD)分析可以模拟生物墨水在控制体积内的流动特性,并通过计算物理量来预测对细胞活力的影响。在本研究中,我们开发了一个分析系统,通过流变学和CFD分析来预测基于螺杆的分配器系统(SDS)对生物墨水中细胞活力的影响。此外,基于羧甲基纤维素/藻酸盐的生物墨水被用于高粘性生物墨水的实证评估。通过流变学测量确定生物墨水的粘度,并通过非线性回归分析从相关方程中得出用于CFD分析的粘度系数。通过与实证评估得出的质量流率进行比较,成功验证了分析得出的质量流率。最后,在用含有C2C12细胞的生物墨水进行生物打印后,确认了细胞活力,这表明所开发的SDS可能适用于生物工程领域的应用。因此,所开发的生物墨水分析系统适用于广泛的系统和材料,有助于生物工程行业节省时间和成本。