Department of Ophthalmology, Federal University of São Paulo, São Paulo 04023-062, Brazil.
Medicine School, Barcelona University, 08007 Barcelona, Spain.
Int J Mol Sci. 2023 Feb 3;24(3):2982. doi: 10.3390/ijms24032982.
Cell injection therapy is emerging as an alternative to treat corneal endothelial dysfunction (CED) and to avoid corneal scarring due to bullous keratopathy. However, establishing a standardized culture procedure that provides appropriate cell yield while retaining functional features remains a challenge. Here, we describe a detailed framework obtained from in vitro culture of human corneal endothelial cells (HCECs) and comparative in vivo experimental models for CED treatment with a new cell tracking approach. Two digestion methods were compared regarding HCEC morphology and adhesion. The effect of Y-27632 (ROCKi) supplementation on final cell yield was also assessed. Cell adhesion efficacy with two cell delivery systems (superparamagnetic embedding and cell suspension) was evaluated in an ex vivo human cornea model and in an in vivo rabbit CED model. The injection of supplemented culture medium or balanced salt solution (BSS) was used for the positive and negative controls, respectively. HCEC isolation with collagenase resulted in better morphology and adhesion of cultured HCEC when compared to EDTA. Y-27632 supplementation resulted in a 2.6-fold increase in final cell yield compared to the control. Ex vivo and in vivo adhesion with both cell delivery systems was confirmed by cell tracker fluorescence detection. Corneal edema and opacity improved in both animal groups treated with cultured HCEC. The corneas in the control groups remained opaque. Both HCEC delivery systems seemed comparable as treatments for CED and for the prevention of corneal scarring.
细胞注射疗法作为一种治疗角膜内皮功能障碍(CED)的替代方法,正在兴起,可以避免由于大疱性角膜病变导致的角膜瘢痕。然而,建立一种标准化的培养程序,在保留功能特征的同时提供适当的细胞产量,仍然是一个挑战。在这里,我们描述了一种从人角膜内皮细胞(HCEC)体外培养中获得的详细框架,以及使用新的细胞跟踪方法治疗 CED 的比较体内实验模型。比较了两种消化方法对 HCEC 形态和黏附的影响。还评估了 Y-27632(ROCKi)补充对最终细胞产量的影响。在体外人角膜模型和体内兔 CED 模型中,评估了两种细胞输送系统(超顺磁嵌入和细胞悬浮液)的细胞黏附效率。补充培养培养基或平衡盐溶液(BSS)的注射分别用作阳性和阴性对照。与 EDTA 相比,用胶原酶分离 HCEC 可获得更好的培养 HCEC 形态和黏附。与对照组相比,Y-27632 补充可使最终细胞产量增加 2.6 倍。通过细胞示踪荧光检测证实了两种细胞输送系统在体外和体内的黏附。接受培养的 HCEC 治疗的两组动物的角膜水肿和混浊均得到改善。对照组的角膜仍不透明。两种 HCEC 输送系统似乎都可作为 CED 治疗和预防角膜瘢痕的治疗方法。