Mostofizadeh Mahsa, Kainz Michael, Alihosseini Farzaneh, Haudum Stephan, Youssefi Mostafa, Bauer Peter, Gnatiuk Iurii, Brüggemann Oliver, Zembsch Katja, Rinner Uwe, Coelho Catarina, Guillén Elena, Teasdale Ian
Department of Textile Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran.
Institute of Polymer Chemistry, Johannes Kepler University, Linz 4040, Austria.
ACS Appl Mater Interfaces. 2024 Oct 2;16(39):52902-52910. doi: 10.1021/acsami.4c10532. Epub 2024 Sep 19.
Inkjet printing is a leading technology in the biofabrication of three-dimensional biomaterials, offering digital, noncontact deposition with micron-level precision. Among these materials, hydroxyapatite is widely recognized for its use in bone tissue engineering. However, most hydroxyapatite-laden inks are unsuitable for inkjet printing. To address this, we developed photocurable and biodegradable phosphoramide-based hydrogels containing thiol-functionalized polyethylene glycol via click chemistry. These hydrogels degrade into phosphates, the natural component of bone. The rheological properties of the inks are finely tuned through chemical design to meet the requirements of nanohydroxyapatite composite inks for piezoelectric inkjet printing. We demonstrated their printability using simple geometric patterns, showcasing a versatile and efficient solution for the precise inkjet printing of biomaterial composites.
喷墨打印是三维生物材料生物制造中的一项领先技术,可实现具有微米级精度的数字式非接触式沉积。在这些材料中,羟基磷灰石因其在骨组织工程中的应用而被广泛认可。然而,大多数含羟基磷灰石的墨水并不适合喷墨打印。为了解决这个问题,我们通过点击化学法开发了含有硫醇官能化聚乙二醇的光固化和可生物降解的磷酰胺基水凝胶。这些水凝胶会降解为磷酸盐,即骨骼的天然成分。通过化学设计对墨水的流变特性进行精细调整,以满足用于压电喷墨打印的纳米羟基磷灰石复合墨水的要求。我们使用简单的几何图案展示了它们的可打印性,为生物材料复合材料的精确喷墨打印提供了一种通用且高效的解决方案。