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Characterization of vitamin C-induced cell sheets formed from primary and immortalized human corneal stromal cells for tissue engineering applications.

机译:由原代和永生化的人类角膜基质细胞形成的维生素C诱导的细胞片的表征,用于组织工程应用。

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The purpose of this study was to compare the ability of primary human corneal stromal cells (HuFib cells) and SV40-immortalized human corneal keratocytes (HCK cells) to synthesize their own extracellular matrix induced by vitamin C supplementation. Therefore, the amount of collagen secreted and resulting biomechanical properties based on the culture duration were assessed. Cells were cultivated for several weeks with or without vitamin C. The amount of collagen secreted by the cells was quantified based on the culture duration. Cell viability was simultaneously determined via the MTT assay. Collagen secretion was increased as a result of vitamin C supplementation. The effect was stronger in primary cells. In addition, vitamin C supplementation had a positive effect on HuFib cell viability. Vitamin C supplementation induced the formation of detachable cell sheets in both primary and immortalized cells. The biomechanical properties of the sheets were evaluated using a static material testing machine, and the ultrastructure of the cell sheets was examined using scanning electron microscopy. The cell sheets formed from HuFib cells had a higher percentage of light transmission between 400 and 800 nm and were superior in terms of E-modulus and ultimate strength testing. Indirect immunofluorescence and Western blot confirmed the presence of collagen type I in the HuFib and HCK cell cultures. Stimulating secretion of the extracellular matrix in corneal stromal cells is a promising approach for corneal stroma reconstruction for tissue engineering applications.
机译:这项研究的目的是比较原代人角膜基质细胞(HuFib细胞)和SV40永生化人角膜角膜细胞(HCK细胞)合成自己的维生素C诱导的细胞外基质的能力。因此,基于培养持续时间评估了胶原蛋白分泌的量以及由此产生的生物力学特性。在有或没有维生素C的情况下将细胞培养数周。根据培养时间对细胞分泌的胶原蛋白量进行定量。通过MTT测定法同时测定细胞活力。补充维生素C可增加胶原蛋白的分泌。在原代细胞中该作用更强。此外,补充维生素C对HuFib细胞生存能力有积极影响。补充维生素C会在原代和永生细胞中诱导形成可分离的细胞片。使用静态材料测试机评估薄片的生物力学性能,并使用扫描电子显微镜检查细胞薄片的超微结构。由HuFib电池形成的电池片在400至800 nm之间具有更高的透光率,并且在E模量和极限强度测试方面表现出色。间接免疫荧光和蛋白质印迹证实了HuFib和HCK细胞培养物中存在I型胶原。刺激角膜基质细胞中细胞外基质的分泌是用于组织工程应用的角膜基质重建的有前途的方法。

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