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The effect of growth factor supplementation on corneal stromal cell phenotype in vitro using a serum-free media

机译:使用无血清培养基体外补充生长因子对角膜基质细胞表型的影响

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In order to expand cells quickly and in high numbers for corneal tissue engineering applications corneal stromal cells, or keratocytes, are often cultured in the presence of serum. However, keratocytes become fibroblastic when exposed to serum leading to a downregulation of corneal stromal specific markers. The purpose of this current study was to determine if corneal stromal cells, made fibroblastic by serum, could display native quiescent keratocyte characteristics when cultured under serum-free conditions supplemented by different growth factors. Markers specific to a native keratocyte phenotype such as keratocan and aldehyde dehydrogenase 3A1 (ALDH3A1) and those specific to a fibrotic phenotype such as a smooth muscle actin (alpha SMA) and collagen type III were examined. Cells were cultured in monolayer, self assembled pellets or collagen hydrogels. Growth factors known to modulate keratocyte phenotype were chosen to supplement the serum free media, specifically insulin-like growth factor 1 (IGF-1) and transforming growth factor beta 1 and 3 (T beta 1 and T beta 3). The effects of serum-free media, growth factors and culture system on cell proliferation and morphology and extracellular matrix (ECM) synthesis were evaluated. The expression of keratocyte markers was evaluated by real-time PCR, immunofluorescent staining and western blotting. In addition, cell migration was tested using scratch assays. When serum was removed from the cells they displayed a reduction in proliferation and ECM synthesis (not significant), in addition to a significant decrease in migratory capacity (p < 0.05). Serum-free media promoted increased expression of keratocan (130.68 +/- 47.44-fold increase; p < 0.05) and collagen type I (15.58 +/- 9.49-fold increase; p < 0.05). However, there was no significant change in ALDH3A1 and alpha SMA expression, while collagen type III expression was significantly increased (44.66 +/- 25.61-fold increase; p < 0.05). In addition, cells retained an elongated fibroblastic morphology. In monolayer, the addition of T beta 1 and T beta 3 to serum free media resulted in reduced expression of keratocan, ALDH3A1 and collagen type I and III, increased expression of alpha SMA (p < 0.05) and an increase in cell proliferation and ECM synthesis. Pellet cultured cells demonstrated a significant increase in ALDH3A1 and collagen type I over 14 days relative to day 5 (p < 0.05), however the expression of fibrotic markers was also enhanced. Cells in collagen hydrogels did not increase expression of keratocyte markers in serum free conditions and underwent contraction in T beta 1 and T beta 3 supplemented media. These results demonstrate that corneal fibroblasts only partially express the phenotypic characteristics of keratocytes when cultured in serum free medium. While growth factors did not significantly enhance this phenotype, it appears that pellet or self-assembled culture could be more beneficial to promoting a keratocyte phenotype. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了快速且大量地扩增细胞以用于角膜组织工程应用,通常在存在血清的情况下培养角膜基质细胞或角膜细胞。然而,当暴露于血清中时,角膜细胞变成成纤维细胞,从而导致角膜基质特异性标志物的下调。这项当前研究的目的是确定在无血清条件下添加不同的生长因子进行培养时,由血清成纤维细胞的角膜基质细胞是否可以显示出天然的静态角膜细胞特性。检查了对角质层蛋白和醛脱氢酶3A1(ALDH3A1)等天然角化细胞表型具有特异性的标记,以及对平滑肌肌动蛋白(αSMA)和III型胶原等纤维化表型具有特异性的标记。在单层,自组装沉淀或胶原水凝胶中培养细胞。选择已知可调节角膜细胞表型的生长因子来补充无血清培养基,特别是胰岛素样生长因子1(IGF-1)和转化生长因子beta 1和3(T beta 1和T beta 3)。评估了无血清培养基,生长因子和培养系统对细胞增殖和形态以及细胞外基质(ECM)合成的影响。通过实时PCR,免疫荧光染色和蛋白质印迹评估角膜细胞标志物的表达。另外,使用划痕测定法测试了细胞迁移。当从细胞中去除血清时,它们显示出增殖和ECM合成的降低(不显着),以及迁移能力的显着降低(p <0.05)。无血清培养基可促进角蛋白聚糖的表达增加(增加130.68 +/- 47.44倍; p <0.05)和I型胶原蛋白(增加15.58 +/- 9.49倍; p <0.05)。然而,ALDH3A1和αSMA表达没有显着变化,而III型胶原蛋白表达却显着增加(增加44.66 +/- 25.61倍; p <0.05)。另外,细胞保留了拉长的成纤维细胞形态。在单层中,向无血清培养基中添加T beta 1和T beta 3导致角蛋白聚糖,ALDH3A1和I型和III型胶原蛋白的表达降低,αSMA的表达增加(p <0.05),细胞增殖和ECM升高合成。相对于第5天,沉淀培养的细胞在14天内显示出ALDH3A1和I型胶原蛋白的显着增加(p <0.05),但是纤维化标记物的表达也得到了增强。胶原蛋白水凝胶中的细胞在无血清条件下不会增加角化细胞标记物的表达,并且在补充了T beta 1和T beta 3的培养基中会收缩。这些结果表明,当在无血清培养基中培养时,角膜成纤维细胞仅部分表达角化细胞的表型特征。尽管生长因子并未显着增强该表型,但沉淀或自组装培养似乎对促进角化细胞表型更有利。 (C)2016 Elsevier Ltd.保留所有权利。

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