Calejo Maria Teresa, Ilmarinen Tanja, Jongprasitkul Hatai, Skottman Heli, Kellomäki Minna
BioMediTech, Department of Electronics and Communications Engineering, Tampere University of Technology, Tampere, Finland.
BioMediTech, University of Tampere, Tampere, Finland.
J Biomed Mater Res A. 2016 Jul;104(7):1646-56. doi: 10.1002/jbm.a.35690. Epub 2016 Mar 15.
Age-related macular degeneration (AMD) is a leading cause of blindness in developed countries, characterised by the degeneration of the retinal pigment epithelium (RPE), a pigmented cell monolayer that closely interacts with the photoreceptors. RPE transplantation is thus considered a very promising therapeutic option to treat this disease. In this work, porous honeycomb-like films are for the first time investigated as scaffold materials for human embryonic stem cell-derived retinal pigment epithelium (hESC-RPE). By changing the conditions during film preparation, it was possible to produce films with homogeneous pore distribution and adequate pore size (∼3-5 µm), that is large enough to ensure high permeability but small enough to enable cell adherence and spreading. A brief dip-coating procedure with collagen type IV enabled the homogeneous adsorption of the protein to the walls and bottom of pores, increasing the hydrophilicity of the surface. hESC-RPE adhered and proliferated on all the collagen-coated materials, regardless of small differences in pore size. The differentiation of hESC-RPE was confirmed by the detection of specific RPE protein markers. These results suggest that the porous honeycomb films can be promising candidates for hESC-RPE tissue engineering, importantly enabling the free flow of ions and molecules across the material. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 104A: 1646-1656, 2016.
年龄相关性黄斑变性(AMD)是发达国家失明的主要原因,其特征是视网膜色素上皮(RPE)退化,RPE是一层与光感受器密切相互作用的色素细胞单层。因此,RPE移植被认为是治疗这种疾病非常有前景的治疗选择。在这项工作中,首次研究了多孔蜂窝状薄膜作为人胚胎干细胞来源的视网膜色素上皮(hESC-RPE)的支架材料。通过改变薄膜制备过程中的条件,可以制备出具有均匀孔径分布和合适孔径(约3-5μm)的薄膜,该孔径足够大以确保高渗透性,但又足够小以实现细胞粘附和铺展。用IV型胶原进行简短的浸涂程序能够使蛋白质均匀吸附到孔壁和孔底,增加表面的亲水性。无论孔径存在微小差异,hESC-RPE都能在所有胶原包被的材料上粘附和增殖。通过检测特定的RPE蛋白标志物证实了hESC-RPE的分化。这些结果表明,多孔蜂窝薄膜有望成为hESC-RPE组织工程的候选材料,重要的是能够使离子和分子在材料中自由流动。©2016威利期刊公司。《生物医学材料研究杂志》A部分:第104A卷:1646 - 1656页,2016年。