首页> 外文期刊>International Journal of Cell Biology >Optimum Combination of Insulin-Transferrin-Selenium and Fetal Bovine Serum for Culture of Rabbit Articular Chondrocytes in Three-Dimensional Alginate Scaffolds
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Optimum Combination of Insulin-Transferrin-Selenium and Fetal Bovine Serum for Culture of Rabbit Articular Chondrocytes in Three-Dimensional Alginate Scaffolds

机译:胰岛素-转铁蛋白-硒与胎牛血清的最佳组合在三维藻酸盐支架中培养兔关节软骨细胞

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摘要

Fetal bovine serum (FBS) has been reported to affect chondrocyte biosynthesis in monolayer culture. Insulin-Transferrin-Selenium ( ITS) was investigated as a partial replacement for FBS during in vitro culture of rabbit articular chondrocytes in three-dimensional alginate scaffold. Chondrocyte-seeded alginate hydrogels were cultured in Dulbecco's modified Eagle's medium plus 10% FBS, 1% ITS plus 2% FBS, 1% ITS plus 4% FBS, or 1% ITS plus 8% FBS. At designed time point, the Chondrocyte-seeded alginate hydrogels were harvested and evaluated with histological staining, immunohistochemistry, and quantitative gene expression analysis. Viable cell density and cell division were also evaluated. Chondrocytes biosynthesis and cell division in 1% ITS with 2% FBS medium were similar to that in medium added with 10% FBS. For a total culture of 3 weeks, phenotypic gene expression in chondrocyte-seeded hydrogels was maintained at high levels in medium with 1% ITS plus 2% FBS, while it was decreased to varying degrees in the other groups. In conclusion, with 1% ITS, medium with 2% FBS could promote chondrocyte biosynthesis and cell division, and prevented cell dedifferentiation in three-dimensional alginate scaffolds.
机译:据报道胎牛血清(FBS)在单层培养中影响软骨细胞的生物合成。在三维藻酸盐支架中体外培养兔关节软骨细胞的过程中,研究了胰岛素-转铁蛋白-硒(ITS)作为FBS的部分替代品。软骨细胞接种藻酸盐水凝胶在Dulbecco改良的Eagle's培养基,10%FBS,1%ITS,2%FBS,1%ITS,4%FBS或1%ITS,8%FBS培养基中培养。在设计的时间点,收集软骨细胞接种的藻酸盐水凝胶,并通过组织学染色,免疫组织化学和定量基因表达分析进行评估。还评估了活细胞密度和细胞分裂。含2%FBS培养基的1%ITS中的软骨细胞生物合成和细胞分裂与添加10%FBS的培养基中的软骨细胞生物合成和细胞分裂相似。总共培养3周,在含1%ITS和2%FBS的培养基中,软骨细胞接种的水凝胶中的表型基因表达保持较高水平,而在其他组中则有所降低。总之,含1%ITS的FBS培养基可以促进软骨细胞的生物合成和细胞分裂,并防止三维藻酸盐支架中的细胞去分化。

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