Xie Mengbo, Su Jingjing, Zhou Shengxi, Li Jingan, Zhang Kun
School of Life Science, Zhengzhou University, Zhengzhou 450001, China.
School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China.
Gels. 2023 Jan 19;9(2):88. doi: 10.3390/gels9020088.
The use of three-dimensional bioprinting technology combined with the principle of tissue engineering is important for the construction of tissue or organ regeneration microenvironments. As a three-dimensional bioprinting ink, hydrogels need to be highly printable and provide a stiff and cell-friendly microenvironment. At present, hydrogels are used as bioprinting inks in tissue engineering. However, there is still a lack of summary of the latest 3D printing technology and the properties of hydrogel materials. In this paper, the materials commonly used as hydrogel bioinks; the advanced technologies including inkjet bioprinting, extrusion bioprinting, laser-assisted bioprinting, stereolithography bioprinting, suspension bioprinting, and digital 3D bioprinting technologies; printing characterization including printability and fidelity; biological properties, and the application fields of bioprinting hydrogels in bone tissue engineering, skin tissue engineering, cardiovascular tissue engineering are reviewed, and the current problems and future directions are prospected.
将三维生物打印技术与组织工程原理相结合,对于构建组织或器官再生微环境具有重要意义。作为一种三维生物打印墨水,水凝胶需要具有高度可打印性,并提供一个坚硬且对细胞友好的微环境。目前,水凝胶被用作组织工程中的生物打印墨水。然而,对于最新的3D打印技术和水凝胶材料的特性仍缺乏总结。本文综述了常用作水凝胶生物墨水的材料;包括喷墨生物打印、挤出生物打印、激光辅助生物打印、立体光刻生物打印、悬浮生物打印和数字3D生物打印技术在内的先进技术;打印特性,包括可打印性和保真度;生物学特性,以及生物打印水凝胶在骨组织工程、皮肤组织工程、心血管组织工程中的应用领域,并对当前存在的问题和未来方向进行了展望。