Department of Bioengineering, Rice University, Houston, Texas, USA.
Department of Chemical and Biomolecular Engineering, Rice University, Houston, Texas, USA.
Tissue Eng Part A. 2024 Jun;30(11-12):256-269. doi: 10.1089/ten.TEA.2023.0097. Epub 2023 Jul 20.
Suspended hydrogel printing is a growing method for fabricating bioprinted hydrogel constructs, largely due to how it enables nonviscous hydrogel inks to be used in extrusion printing. In this work, a previously developed poly(-isopropylacrylamide)-based thermogelling suspended bioprinting system was examined in the context of chondrocyte-laden printing. Material factors such as ink concentration and cell concentration were found to have a significant effect on printed chondrocyte viability. In addition, the heated poloxamer support bath was able to maintain chondrocyte viability for up to 6 h of residence within the bath. The relationship between the ink and support bath was also assessed by measuring the rheological properties of the bath before and after printing. Bath storage modulus and yield stress decreased during printing as nozzle size was reduced, indicating the likelihood that dilution occurs over time through osmotic exchange with the ink. Altogether this work demonstrates the promise for printing high-resolution cell-encapsulating tissue engineering constructs, while also elucidating complex relationships between the ink and bath, which must be taken into consideration when designing suspended printing systems.
悬浮水凝胶打印是一种日益流行的制造生物打印水凝胶结构的方法,主要是因为它可以在挤出打印中使用非粘性水凝胶墨水。在这项工作中,研究了先前开发的基于聚(异丙基丙烯酰胺)的热凝胶悬浮生物打印系统在负载软骨细胞的打印中的情况。发现油墨浓度和细胞浓度等材料因素对打印的软骨细胞活力有显著影响。此外,加热的泊洛沙姆支撑浴能够在浴中停留长达 6 小时的时间内保持软骨细胞的活力。还通过测量打印前后支撑浴的流变特性来评估油墨和支撑浴之间的关系。随着喷嘴尺寸的减小,浴的储存模量和屈服应力在打印过程中降低,表明随着时间的推移通过与油墨的渗透交换可能会发生稀释。总的来说,这项工作展示了打印高分辨率细胞包封组织工程结构的潜力,同时阐明了油墨和浴之间复杂的关系,在设计悬浮打印系统时必须考虑这些关系。