Levato Riccardo, Dudaryeva Oksana, Garciamendez-Mijares Carlos Ezio, Kirkpatrick Bruce E, Rizzo Riccardo, Schimelman Jacob, Anseth Kristi S, Chen Shaochen, Zenobi-Wong Marcy, Zhang Yu Shrike
Department of Clinical Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, Netherlands.
Department of Orthopedics, University Medical Center Utrecht, Utrecht, Netherlands.
Nat Rev Methods Primers. 2023;3. doi: 10.1038/s43586-023-00231-0. Epub 2023 Jun 22.
Light-based vat-polymerization bioprinting enables computer-aided patterning of 3D cell-laden structures in a point-by-point, layer-by-layer or volumetric manner, using vat (vats) filled with photoactivatable bioresin (bioresins). This collection of technologies - divided by their modes of operation into stereolithography, digital light processing and volumetric additive manufacturing - has been extensively developed over the past few decades, leading to broad applications in biomedicine. In this Primer, we illustrate the methodology of light-based vat-polymerization 3D bioprinting from the perspectives of hardware, software and bioresin selections. We follow with discussions on methodological variations of these technologies, including their latest advancements, as well as elaborating on key assessments utilized towards ensuring qualities of the bioprinting procedures and products. We conclude by providing insights into future directions of light-based vat-polymerization methods.
基于光的光固化生物打印能够以逐点、逐层或体素的方式对载有细胞的三维结构进行计算机辅助图案化,使用装有光可激活生物树脂的容器。这一系列技术——根据其操作模式分为立体光刻、数字光处理和体素增材制造——在过去几十年中得到了广泛发展,在生物医学领域有着广泛应用。在本入门指南中,我们从硬件、软件和生物树脂选择的角度阐述基于光的光固化三维生物打印方法。接着,我们讨论这些技术的方法变体,包括其最新进展,并详细说明用于确保生物打印过程和产品质量的关键评估。最后,我们对基于光的光固化方法的未来方向提供见解。