Chi Miaomiao, Yuan Bowei, Xie Zijun, Hong Jing
Department of Ophthalmology, Peking University Third Hospital, Beijing 100191, China.
Key Laboratory of Vision Loss and Restoration, Ministry of Education, Beijing 100191, China.
Bioengineering (Basel). 2023 Nov 3;10(11):1284. doi: 10.3390/bioengineering10111284.
Corneal transplantation is the only treatment for corneal endothelial blindness. However, there is an urgent need to find substitutes for corneal endothelium grafts due to the global shortage of donor corneas. An emerging research field focuses on the construction of scaffold-based corneal endothelium tissue engineering (CETE). Long-term success in CETE transplantation may be achieved by selecting the appropriate biomaterials as scaffolds of corneal endothelial cells and adding bioactive materials to promote cell activity. This article reviews the research progress of CETE biomaterials in the past 20 years, describes the key characteristics required for corneal endothelial scaffolds, and summarizes the types of materials that have been reported. Based on these, we list feasible improvement strategies for biomaterials innovation. In addition, we describe the improved techniques for the scaffolds' surface topography and drug delivery system. Some promising technologies for constructing CETE are proposed. However, some questions have not been answered yet, and clinical trials and industrialization should be carried out with caution.
角膜移植是治疗角膜内皮盲的唯一方法。然而,由于全球供体角膜短缺,迫切需要找到角膜内皮移植物的替代品。一个新兴的研究领域聚焦于基于支架的角膜内皮组织工程(CETE)构建。通过选择合适的生物材料作为角膜内皮细胞的支架并添加生物活性材料以促进细胞活性,或许可以实现CETE移植的长期成功。本文综述了过去20年中CETE生物材料的研究进展,描述了角膜内皮支架所需的关键特性,并总结了已报道的材料类型。基于这些,我们列出了生物材料创新的可行改进策略。此外,我们描述了支架表面形貌和药物递送系统的改进技术。还提出了一些构建CETE的有前景的技术。然而,一些问题尚未得到解答,临床试验和产业化应谨慎进行。