Department of Ophthalmology, Peking University Third Hospital, 49 North Garden Road, Haidian District, Beijing 100191, China.
J Cell Biochem. 2012 Feb;113(2):590-8. doi: 10.1002/jcb.23383.
Recent studies have suggested that bone marrow-derived mesenchymal stem cells (BMMSCs) are capable of retinal tissue-specific differentiation but not retinal pigment epithelium (RPE) cell-specific differentiation. Photoreceptor outer segments (POS) contribute to RPE development and maturation. However, there has been no standard culture system that fosters the differentiation of BMMSCs into mature RPE cells in vitro. In this study, we investigated if the soluble factors from RPE cells and POS could differentiate BMMSCs into cells having a phenotype characteristic of RPE cells. Rat BMMSCs were separately co-cultured with RPE cells, or they were exposed to either control medium, RPE cell-conditioned medium (RPECM), POS, or a combination of RPECM and POS (RPECM-POS). After 7 days, the cells were analyzed for morphology and the expression of RPE markers (cytokeratin 8, CRALBP, and RPE65) to assess the RPE differentiation. Significantly higher pigment accumulation and increased protein expression of the three markers were seen in cells cultured in RPECM-POS than in other treated cultures. Furthermore, the RPECM-POS-treated cultures displayed ultrastructural features typical of RPE cells, expressed RPE cell functional proteins, and had the capability to phagocytose POS. Together, theses results suggest the combination of RPECM and POS stimulate BMMSCs differentiation toward a functional RPE phenotype. Our results provide the foundation for a new route to RPE regenerative therapy involving BMMSCs. Future work isolating the active agent in RPECM and POS would be useful in therapies for RPE diseases or in developing appropriately pre-differentiated BMMSCs for tissue-engineered RPE reconstruction.
最近的研究表明,骨髓间充质干细胞(BMMSCs)能够进行视网膜组织特异性分化,但不能进行视网膜色素上皮(RPE)细胞特异性分化。光感受器外节(POS)有助于 RPE 的发育和成熟。然而,目前还没有标准的培养体系能够促进 BMMSCs 在体外分化为成熟的 RPE 细胞。在这项研究中,我们研究了 RPE 细胞和 POS 的可溶性因子是否能将 BMMSCs 分化为具有 RPE 细胞表型特征的细胞。将大鼠 BMMSCs 分别与 RPE 细胞共培养,或将其暴露于对照培养基、RPE 细胞条件培养基(RPECM)、POS 或 RPECM 和 POS 的混合物(RPECM-POS)中。7 天后,分析细胞形态和 RPE 标志物(角蛋白 8、CRALBP 和 RPE65)的表达,以评估 RPE 分化。与其他处理培养物相比,在 RPECM-POS 中培养的细胞中观察到明显更高的色素积累和三种标志物的蛋白表达增加。此外,RPECM-POS 处理的培养物显示出典型的 RPE 细胞超微结构特征,表达 RPE 细胞功能蛋白,并具有吞噬 POS 的能力。综上所述,RPECM 和 POS 的组合刺激 BMMSCs 向功能性 RPE 表型分化。我们的研究结果为涉及 BMMSCs 的 RPE 再生治疗提供了新的途径。未来分离 RPECM 和 POS 中的活性物质的工作将有助于 RPE 疾病的治疗或开发用于组织工程 RPE 重建的适当预分化 BMMSCs。