首页> 外文期刊>Tissue engineering >Influence of various alginate brands on the redifferentiation of dedifferentiated bovine articular chondrocytes in alginate bead culture under high and low oxygen tension.
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Influence of various alginate brands on the redifferentiation of dedifferentiated bovine articular chondrocytes in alginate bead culture under high and low oxygen tension.

机译:在高和低氧压下,各种藻酸盐品牌对藻酸盐珠培养物中去分化的牛关节软骨细胞再分化的影响。

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摘要

We examined the influence of various alginates on the redifferentiation of dedifferentiated articular chondrocytes in alginate bead culture under low (5%) and (21%) high oxygen supply. Isolated bovine articular chondrocytes were dedifferentiated and multiplied by 2-week monolayer culture under 21% oxygen. They were subcultured at a density of 10(7) cells/mL in six different commercially available sodium alginates (1.2%, w/v) and held under 21 or 5% oxygen for 3 weeks. Proliferation (DNA measurement on days 0 and 21 of culture), collagen type II production (immunocytochemistry and Western blotting), and [(3)H]proline and [(35)S]sulfate incorporation were monitored. Collagen type II production was significantly stronger under 5% oxygen compared with 21% oxygen in two alginates (three other alginates nearly reached the significance level). However, alginate-based differences proved not to be significant. [(3)H]Proline incorporation was not influenced by alginate but showed strong oxygen dependency (up to 3-fold higher under 5% oxygen). For [(35)S]sulfate incorporation oxygen dependency was even stronger (up to 8-fold higher under 5% oxygen) and significant alginate-dependent differences were found for several alginates. The effects of the different alginates did not correlate with their pH, viscosity, or guluronic:mannuronic acid ratio. Thus, the type of alginate and even more, the oxygen supply, influence the redifferentiation and matrix production of dedifferentiated bovine articular chondrocytes.
机译:我们检查了在低氧供应(5%)和高氧供应(21%)下藻酸盐珠培养中各种藻酸盐对去分化关节软骨细胞再分化的影响。将分离的牛关节软骨细胞去分化,并在21%氧气下乘以2周单层培养。将它们以10(7)细胞/ mL的密度在六种不同的市售海藻酸钠(1.2%,w / v)中亚培养,并在21或5%氧气下保持3周。监测增殖(在培养的第0天和第21天测量DNA),II型胶原蛋白的产生(免疫细胞化学和蛋白质印迹)以及[(3)H]脯氨酸和[(35)S]硫酸盐的掺入。在氧气含量为5%的情况下,与两种藻酸盐中的21%的氧气相比,II型胶原蛋白的产生明显更强(其他三种藻酸盐几乎达到了显着水平)。但是,基于藻酸盐的差异被证明并不重要。 [(3)H]脯氨酸的掺入不受藻酸盐的影响,但显示出强烈的氧依赖性(在5%的氧下可达3倍)。对于[(35)S]硫酸盐的掺入,氧依赖性更强(在5%氧下可达8倍),并且发现几种藻酸盐存在显着的藻酸盐依赖性差异。不同藻酸盐的作用与其pH,粘度或古洛糖醛:甘露糖醛酸的比例无关。因此,藻酸盐的类型,甚至更多的氧气供应,会影响去分化的牛关节软骨细胞的再分化和基质产生。

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