University of Miami Miller School of Medicine, Miami, FL.
University of Tennessee College of Medicine, Memphis, TN; and.
Cornea. 2024 Nov 1;43(11):1456-1465. doi: 10.1097/ICO.0000000000003655. Epub 2024 Aug 2.
Successful corneal transplantation relies on the viability of the corneal endothelium. Although various preservation systems have been developed in the field of eye banking, long-term storage of the corneal endothelium poses challenges and is costly. Optisol-GS in the past has been the most commonly used solution for intermediate-term corneal storage in the United States. However, disruptions in the availability of Optisol-GS, caused by rising costs and supply shortages, have necessitated alternative methods of corneal preservation. Previously described preservation methods include hypothermia (2-8°C) for short-term storage (7-14 days), organ culture (28-37°C) for intermediate storage (4-7 weeks), and cryopreservation for longer-term storage. In this review, we examine standard practice and alternative methods for corneal storage.
成功的角膜移植依赖于角膜内皮细胞的活力。尽管在眼库领域已经开发出各种保存系统,但角膜内皮细胞的长期储存仍然具有挑战性且成本高昂。在过去,Optisol-GS 是美国用于中期角膜储存的最常用溶液。然而,由于成本上升和供应短缺,Optisol-GS 的供应中断,需要替代的角膜保存方法。之前描述的保存方法包括短期储存(7-14 天)的低温(2-8°C)、中期储存(4-7 周)的器官培养(28-37°C)和长期储存的冷冻保存。在这篇综述中,我们研究了角膜储存的标准方法和替代方法。