Gonçalves Sara, Rodrigues Inês Patrício, Padrão Jorge, Silva João Pedro, Sencadas Vitor, Lanceros-Mendez Senentxu, Girão Henrique, Gama Francisco M, Dourado Fernando, Rodrigues Lígia R
Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.
Centre of Ophthalmology and Vision Sciences, IBILI-Faculty of Medicine, University of Coimbra, 3000-354 Coimbra, Portugal.
Colloids Surf B Biointerfaces. 2016 Mar 1;139:1-9. doi: 10.1016/j.colsurfb.2015.11.051. Epub 2015 Nov 30.
This work evaluated the effect of acetylated bacterial cellulose (ABC) substrates coated with urinary bladder matrix (UBM) on the behavior of retinal pigment epithelium (RPE), as assessed by cell adhesion, proliferation and development of cell polarity exhibiting transepithelial resistance and polygonal shaped-cells with microvilli. Acetylation of bacterial cellulose (BC) generated a moderate hydrophobic surface (around 65°) while the adsorption of UBM onto these acetylated substrates did not affect significantly the surface hydrophobicity. The ABS substrates coated with UBM enabled the development of a cell phenotype closer to that of native RPE cells. These cells were able to express proteins essential for their cytoskeletal organization and metabolic function (ZO-1 and RPE65), while showing a polygonal shaped morphology with microvilli and a monolayer configuration. The coated ABC substrates were also characterized, exhibiting low swelling effect (between 1.5-2.0 swelling/mm(3)), high mechanical strength (2048MPa) and non-pyrogenicity (2.12EU/L). Therefore, the ABC substrates coated with UBM exhibit interesting features as potential cell carriers in RPE transplantation that ought to be further explored.
本研究评估了涂覆有膀胱基质(UBM)的乙酰化细菌纤维素(ABC)底物对视网膜色素上皮(RPE)细胞行为的影响,通过细胞黏附、增殖以及表现出跨上皮电阻和带有微绒毛的多边形细胞的细胞极性发展来进行评估。细菌纤维素(BC)的乙酰化产生了适度的疏水表面(约65°),而UBM在这些乙酰化底物上的吸附并未显著影响表面疏水性。涂覆有UBM的ABC底物能够使细胞表型发展得更接近天然RPE细胞。这些细胞能够表达其细胞骨架组织和代谢功能所必需的蛋白质(ZO-1和RPE65),同时呈现出带有微绒毛的多边形形态和单层结构。涂覆的ABC底物还具有低膨胀效应(1.5 - 2.0膨胀/mm³之间)、高机械强度(2048MPa)和无热原性(2.12EU/L)的特点。因此,涂覆有UBM的ABC底物作为RPE移植中潜在的细胞载体展现出了有趣的特性,值得进一步探索。