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Low-glucose enhances keratocyte-characteristic phenotype from corneal stromal cells in serum-free conditions

机译:低葡萄糖在无血清条件下从角膜基质细胞增强角蛋白酶特征表型

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The avascular cornea is a uniquely-isolated organ, with its stroma constituting a nutrient-poor environment. Consequently, the availability of metabolites such as glucose to corneal stromal cells is considerably reduced compared with other tissues, or indeed with media commonly used to culture these cells in vitro . However, the role of glucose in the behaviour of human corneal keratocytes has been overlooked. As such, we sought to investigate the effects of low-glucose formulations on the phenotype of human corneal stromal cells. Cells cultured in low-glucose were able to survive for extended periods when compared to high-glucose, serum-free conditions. Furthermore, low-glucose enhanced their reversal to a keratocyte-characteristic phenotype. Specifically, cells within low-glucose medium assumed dendritic morphologies, with bean-shaped condensed nuclei, absence of alpha-smooth muscle actin or stress fibres, and a corresponding reduction in migratory and contractile activities when compared with high-glucose, serum-free conditions. Moreover, cells within low-glucose uniquely recovered the ability to express a robust keratocyte-characteristic marker, CD34, while still expressing elevated levels of other representative phenotypic markers such as keratocan, lumican, ALDH1A1, and ALDH3A1. These results indicate that low-glucose enhances keratocyte-characteristic phenotype above and beyond established media formulations and thus has important implications for corneal biology in health and disease.
机译:养血基角膜是一个唯一孤立的器官,其基质构成营养不良的环境。因此,与其他组织相比,代谢物如葡萄糖的可用性,例如葡萄糖对角膜基质细胞,或者实际上与常用于体外培养这些细胞的培养基相比显着降低。然而,葡萄糖在人角膜角膜织物的行为中的作用被忽略了。因此,我们试图探讨低葡萄糖配方对人角膜基质细胞表型的影响。与高葡萄糖,无血清条件相比,低葡萄糖中培养的细胞能够在延长的时期存活。此外,低葡萄糖增强了它们对角蛋白酶特征表型的逆转。具体地,低葡萄糖介质内的细胞假设树突形态,豆形浓缩核,不存在α-平滑肌肌动蛋白或应激纤维,以及与高葡萄糖,无血清条件相比的迁移和收缩活动的相应降低。此外,低葡萄糖内的细胞唯一地回收了表达稳健的角蛋白特征标记,CD34的能力,同时仍表达升高的其他代表性表型标志物,例如角蛋白,康兰,ALDH1A1和ALDH3A1。这些结果表明,低葡萄糖增强了以上和超越建立的培养基配方的角蛋白酶特征表型,因此对健康和疾病的角膜生物学具有重要意义。

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