1 Department of Ophthalmology, Keio University School of Medicine , Tokyo, Japan .
Tissue Eng Part C Methods. 2013 Dec;19(12):901-10. doi: 10.1089/ten.TEC.2013.0030. Epub 2013 May 14.
Tissue-engineering approaches to cultivate corneal endothelial cells (CECs) or induce CECs from stem cells are under investigation for the treatment of endothelial dysfunction. Before clinical application, a validation method to determine the quality of these cells is required. In this study, we quantified the endothelial pump function required for maintaining the corneal thickness using rabbit CECs (RCECs) and a human CEC line (B4G12). The potential difference of RCECs cultured on a permeable polyester membrane (Snapwell), B4G12 cells on Snapwell, or B4G12 cells on a collagen membrane (CM6) was measured by an Ussing chamber system, and the effect of different concentrations of ouabain (Na,K-ATPase specific inhibitor) was obtained. A mathematical equation derived from the concentration curve revealed that 2 mM ouabain decreases pump function of RCECs to 1.0 mV, and 0.6 mM ouabain decreases pump function of B4G12 on CM6 to 1.0 mV. Ouabain injection into the anterior chamber of rabbit eyes at a concentration of <2 mM maintained the corneal thickness, while those over 3 mM significantly increased the corneal thickness. B4G12 cell sheets transplanted into rabbit eyes treated with 0.6 mM ouabain maintained the corneal thickness, while 3.5 mM ouabain significantly increased the corneal thickness. Taken together, pump function >1.0 mV is required to maintain the corneal thickness. These results can be used for standardization of CEC pump function and validation of tissue-engineered CEC sheets for clinical use.
组织工程方法培养角膜内皮细胞(CECs)或诱导干细胞分化为 CECs 用于治疗内皮功能障碍。在临床应用之前,需要一种验证方法来确定这些细胞的质量。在这项研究中,我们使用兔角膜内皮细胞(RCECs)和人 CEC 系(B4G12)量化了维持角膜厚度所需的内皮泵功能。通过 Ussing 室系统测量培养在可渗透聚酯膜(Snapwell)上的 RCECs、Snapwell 上的 B4G12 细胞或胶原膜(CM6)上的 B4G12 细胞的潜在差异,并获得不同浓度哇巴因(Na,K-ATP 酶特异性抑制剂)的作用。从浓度曲线推导出的数学方程表明,2 mM 哇巴因将 RCECs 的泵功能降低至 1.0 mV,0.6 mM 哇巴因将 CM6 上的 B4G12 泵功能降低至 1.0 mV。在浓度低于 2 mM 的情况下,将哇巴因注射到兔眼前房可维持角膜厚度,而浓度高于 3 mM 则显著增加角膜厚度。在浓度为 0.6 mM 的哇巴因处理过的兔眼内移植 B4G12 细胞片可维持角膜厚度,而 3.5 mM 哇巴因则显著增加角膜厚度。综上所述,维持角膜厚度需要泵功能>1.0 mV。这些结果可用于 CEC 泵功能的标准化和用于临床应用的组织工程化 CEC 片的验证。