Lai Yushang, Xiao Xiong, Huang Ziwei, Duan Hongying, Yang Liping, Yang Yuchu, Li Chenxi, Feng Li
Division of Vascular Surgery, Department of General Surgery and Regenerative Medicine Research Center, West China Hospital, Sichuan University, Chengdu 610041, China.
Int J Mol Sci. 2024 Nov 22;25(23):12567. doi: 10.3390/ijms252312567.
Constructing scaffolds with the desired structures and functions is one of the main goals of tissue engineering. Three-dimensional (3D) bioprinting is a promising technology that enables the personalized fabrication of devices with regulated biological and mechanical characteristics similar to natural tissues/organs. To date, 3D bioprinting has been widely explored for biomedical applications like tissue engineering, drug delivery, drug screening, and in vitro disease model construction. Among different bioinks, photocrosslinkable bioinks have emerged as a powerful choice for the advanced fabrication of 3D devices, with fast crosslinking speed, high resolution, and great print fidelity. The photocrosslinkable biomaterials used for light-based 3D printing play a pivotal role in the fabrication of functional constructs. Herein, this review outlines the general 3D bioprinting approaches related to photocrosslinkable biomaterials, including extrusion-based printing, inkjet printing, stereolithography printing, and laser-assisted printing. Further, the mechanisms, advantages, and limitations of photopolymerization and photoinitiators are discussed. Next, recent advances in natural and synthetic photocrosslinkable biomaterials used for 3D bioprinting are highlighted. Finally, the challenges and future perspectives of photocrosslinkable bioinks and bioprinting approaches are envisaged.
构建具有所需结构和功能的支架是组织工程的主要目标之一。三维(3D)生物打印是一项很有前景的技术,它能够个性化制造具有与天然组织/器官相似的可控生物学和机械特性的装置。迄今为止,3D生物打印已在组织工程、药物递送、药物筛选和体外疾病模型构建等生物医学应用中得到广泛探索。在不同的生物墨水当中,可光交联生物墨水已成为先进制造3D装置的有力选择,具有交联速度快、分辨率高和打印保真度好等优点。用于基于光的3D打印的可光交联生物材料在功能性构建体的制造中起着关键作用。在此,本综述概述了与可光交联生物材料相关的一般3D生物打印方法,包括挤出式打印、喷墨打印、立体光刻打印和激光辅助打印。此外,还讨论了光聚合反应和光引发剂的作用机制、优点及局限性。接下来,重点介绍了用于3D生物打印的天然和合成可光交联生物材料的最新进展。最后,展望了可光交联生物墨水和生物打印方法面临的挑战及未来前景。