Jia Shuo, Bu Yashan, Lau Dzi-Shing Aaron, Lin Zhizhen, Sun Tianhao, Lu Weijia William, Lu Sheng, Ruan Changshun, Chan Cheuk-Hung Jonathan
Department of Ophthalmology, LKS Faculty of Medicine, University of Hong Kong, Hong Kong, Hong Kong SAR, China.
Department of Orthopedic and Traumatology, LKS Faculty of Medicine, University of Hong Kong, Hong Kong, Hong Kong SAR, China.
Front Bioeng Biotechnol. 2023 Jan 6;10:1065460. doi: 10.3389/fbioe.2022.1065460. eCollection 2022.
Corneal transplantation constitutes one of the major treatments in severe cases of corneal diseases. The lack of cornea donors as well as other limitations of corneal transplantation necessitate the development of artificial corneal substitutes. Biosynthetic cornea model using 3D printing technique is promising to generate artificial corneal structure that can resemble the structure of the native human cornea and is applicable for regenerative medicine. Research on bioprinting artificial cornea has raised interest into the wide range of materials and cells that can be utilized as bioinks for optimal clarity, biocompatibility, and tectonic strength. With continued advances in biomaterials science and printing technology, it is believed that bioprinted cornea will eventually achieve a level of clinical functionality and practicality as to replace donated corneal tissues, with their associated limitations such as limited or unsteady supply, and possible infectious disease transmission. Here, we review the literature on bioprinting strategies, 3D corneal modelling, material options, and cellularization strategies in relation to keratoprosthesis design. The progress, limitations and expectations of recent cases of 3D bioprinting of artifial cornea are discussed. An outlook on the rise of 3D bioprinting in corneal reconstruction and regeneration is provided.
角膜移植是严重角膜疾病的主要治疗方法之一。角膜供体的短缺以及角膜移植的其他局限性使得人工角膜替代品的研发成为必要。利用3D打印技术的生物合成角膜模型有望生成类似人眼角膜结构的人工角膜结构,并适用于再生医学。生物打印人工角膜的研究引发了人们对多种材料和细胞的兴趣,这些材料和细胞可作为生物墨水,以实现最佳的透明度、生物相容性和结构强度。随着生物材料科学和打印技术的不断进步,人们相信生物打印角膜最终将达到一定的临床功能和实用性水平,从而取代捐赠的角膜组织,因为捐赠角膜组织存在供应有限或不稳定以及可能传播传染病等相关局限性。在此,我们综述了与角膜假体设计相关的生物打印策略、3D角膜建模、材料选择和细胞化策略的文献。讨论了近期人工角膜3D生物打印案例的进展、局限性和期望。展望了3D生物打印在角膜重建和再生中的兴起。