Center for Biomaterials, Korea Institute of Science and Technology (KIST), Seoul 02792, Republic of Korea.
Division of Bio-Medical Science and Technology, KIST School, University of Science and Technology (UST), Seoul 02792, Republic of Korea.
ACS Appl Mater Interfaces. 2022 Mar 16;14(10):12116-12129. doi: 10.1021/acsami.2c01709. Epub 2022 Mar 3.
Here, we report a transparent, biodegradable, and cell-adhesive carrier that is securely coupled with the extracellular matrix (ECM) for corneal endothelial cell (CEC) transplantation. To fabricate a CEC carrier, poly(lactide--caprolactone) (PLCL) solution was poured onto the decellularized ECM (UMDM) derived from in vitro cultured umbilical cord blood-MSCs. Once completely dried, ECM-PLCL was then peeled off from the substrate. It was 20 μm thick, transparent, rich in fibronectin and collagen type IV, and easy to handle. Surface characterizations exhibited that ECM-PLCL was very rough (54.0 ± 4.50 nm) and uniformly covered in high density by ECM and retained a positive surface charge (65.2 ± 57.8 mV), as assessed via atomic force microscopy. Human CECs (B4G12) on the ECM-PLCL showed good cell attachment, with a cell density similar to the normal cornea. They could also maintain a cell phenotype, with nicely formed cell-cell junctions as assessed via ZO-1 and N-cadherin at 14 days. This was in sharp contrast to the CEC behaviors on the FNC-coated PLCL (positive control). A function-related marker, Na/K-ATPase, was also identified via western blot and immunofluorescence. In addition, primary rabbit CECs showed a normal shape and they could express structural and functional proteins on the ECM-PLCL. A simulation test confirmed that CECs loaded on the ECM-PLCL were successfully engrafted into the decellularized porcine corneal tissue, with a high engraftment level and cell viability. Moreover, ECM-PLCL transplantation into the anterior chamber of the rabbit eye for 8 weeks proved the maintenance of normal cornea properties. Taken together, this study demonstrates that our ECM-PLCL can be a promising cornea endothelium graft with an excellent ECM microenvironment for CECs.
在这里,我们报道了一种透明、可生物降解且具有细胞黏附性的载体,它与细胞外基质(ECM)紧密结合,用于角膜内皮细胞(CEC)移植。为了制备 CEC 载体,将聚(丙交酯-己内酯)(PLCL)溶液浇铸在体外培养的脐带血-MSCs 衍生的去细胞化 ECM(UMDM)上。一旦完全干燥,ECM-PLCL 就会从基质上剥离下来。它厚度为 20μm,透明,富含纤连蛋白和胶原 IV 型,易于处理。表面特性表明,ECM-PLCL 非常粗糙(54.0±4.50nm),并且 ECM 均匀地高密度覆盖,保持正表面电荷(65.2±57.8mV),这是通过原子力显微镜评估的。在 ECM-PLCL 上的人 CEC(B4G12)表现出良好的细胞附着,细胞密度与正常角膜相似。它们还可以保持细胞表型,通过 ZO-1 和 N-钙粘蛋白在 14 天评估时形成良好的细胞-细胞连接。这与 FNC 涂层的 PLCL(阳性对照)上的 CEC 行为形成鲜明对比。通过 Western blot 和免疫荧光也鉴定了功能相关的标志物 Na/K-ATPase。此外,原代兔 CEC 在 ECM-PLCL 上表现出正常形态,并且可以表达结构和功能蛋白。模拟试验证实,加载在 ECM-PLCL 上的 CEC 成功移植到去细胞化的猪角膜组织中,具有较高的移植水平和细胞活力。此外,将 ECM-PLCL 移植到兔眼前房 8 周证明了正常角膜特性的维持。总之,这项研究表明,我们的 ECM-PLCL 可以成为一种有前途的角膜内皮移植物,为 CEC 提供优异的 ECM 微环境。