Brand Izabella, Groß Isabel, Li Dege, Zhang Yanzhen, Bräuer Anja U
Carl von Ossietzky University of Oldenburg, Faculty of Mathematics and Science, Department of Chemistry D-26111 Oldenburg Germany
Research Group Anatomy, School for Medicine and Health Science, Carl von Ossietzky University Oldenburg Oldenburg Germany
RSC Adv. 2019 Dec 11;9(70):40910-40916. doi: 10.1039/c9ra07521f. eCollection 2019 Dec 9.
Droplet-based bio-printing (DBB) techniques have been extensively accepted due to their simplicity, flexibility and cost performance. However, the applicability of inkjet printing for bioprinting techniques still faces challenges, such as a narrow range of available bio-ink materials, cell damage due to the pressure strike and high shear rate during the printing process. Here, a new droplet-based printing technique, pneumatic conveying printing (PCP), is described. This new technique is successfully adopted for cell-printing purposes. The cells present in the bio-ink are not exposed to any significant pressure and therefore the PCP technique is gentle to the cells. Furthermore, PCP allows the usage of inks with viscosities higher than 1000 mPa s, enabling the usage of bio-inks with high cell concentrations (several tens of millions per millilitre). As a proof of concept, two different cell types were printed with this novel technique. To achieve a printing resolution of 400 to 600 μm, cells were encapsulated into a hydrogel containing calcium alginate. Deposition of the bio-ink drop containing sodium alginate on a surface pre-treated in CaCl solution, ensures a fast cross-linking reaction and the formation of gel drops. Cells encapsulated in the alginate gel survive and proliferate. Our novel PCP technique is highly suitable for 2D and 3D cell bio-printing.
基于液滴的生物打印(DBB)技术因其简单性、灵活性和性价比而被广泛接受。然而,喷墨打印在生物打印技术中的适用性仍面临挑战,例如可用生物墨水材料的范围狭窄、打印过程中压力冲击和高剪切速率导致的细胞损伤。在此,描述了一种新的基于液滴的打印技术——气力输送打印(PCP)。这项新技术已成功应用于细胞打印。生物墨水中的细胞不会受到任何显著压力,因此PCP技术对细胞较为温和。此外,PCP允许使用粘度高于1000 mPa·s的墨水,从而能够使用高细胞浓度(每毫升数千万个)的生物墨水。作为概念验证,用这种新技术打印了两种不同类型的细胞。为了实现400至600μm的打印分辨率,将细胞封装在含有海藻酸钙的水凝胶中。将含有海藻酸钠的生物墨水滴沉积在CaCl溶液预处理过的表面上,可确保快速交联反应并形成凝胶滴。封装在海藻酸盐凝胶中的细胞能够存活并增殖。我们新颖的PCP技术非常适合二维和三维细胞生物打印。