Department of Applied Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Research Fellow of Japan Society for the Promotion of Science, Kojimachi Business Center Building, 5-3-1 Kojimachi, Chiyoda-ku, Tokyo, 102-0083, Japan.
Macromol Rapid Commun. 2023 Apr;44(8):e2300025. doi: 10.1002/marc.202300025. Epub 2023 Feb 26.
Embedded extrusion printing provides a versatile platform for fabricating complex hydrogel-based biological structures with living cells. However, the time-consuming process and rigorous storage conditions of current support baths hinder their commercial application. This work reports a novel "out-of-the-box" granular support bath based on chemically crosslinked cationic polyvinyl alcohol (PVA) microgels, which is ready to use by simply dispersing the lyophilized bath in water. Notably, with ionic modification, PVA microgels yield reduced particle size, uniform distribution, and appropriate rheological properties, contributing to high-resolution printing. Following by the lyophilization and re-dispersion process, ion-modified PVA baths recover to its original state, with unchanged particle size, rheological properties, and printing resolution, demonstrating its stability and recoverability. Lyophilization facilitates the long-term storage and delivery of granular gel baths, and enables the application of "out-of-the-box" support materials, which will greatly simplify experimental procedures, avoid labor-intensive and time-consuming operations, thus accelerating the broad commercial development of embedded bioprinting.
嵌入式挤出打印为制造具有活细胞的复杂水凝胶基生物结构提供了一个多功能平台。然而,当前支撑浴的耗时过程和严格的储存条件阻碍了它们的商业应用。本工作报道了一种新颖的“即用型”颗粒支撑浴,基于化学交联的阳离子聚乙烯醇(PVA)微凝胶,只需将冻干的支撑浴在水中分散即可使用。值得注意的是,通过离子改性,PVA 微凝胶的粒径减小,分布均匀,流变性能适当,有助于实现高分辨率打印。通过冻干和再分散过程,离子改性的 PVA 浴恢复到原始状态,粒径、流变性能和打印分辨率均无变化,证明了其稳定性和可恢复性。冻干有利于颗粒状凝胶浴的长期储存和输送,并能够应用“即用型”支撑材料,这将大大简化实验程序,避免劳动密集型和耗时的操作,从而加速嵌入式生物打印的广泛商业发展。