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Bioreactor improves the growth and viability of chondrocytes in the knitted poly-L,D-lactide scaffold

机译:生物反应器可提高Chondrocytes在针织聚-L,D-丙交酯支架中的生长和活力

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In the present study bovine chondrocytes were cultured in two different environments (static flasks and bioreactor) in knitted poly-L,D-lactide (PLDLA) scaffolds up to 4 weeks. Chondrocyte viability was assessed by employing cell viability fluorescence markers. The cells were visualized using confocal laser scanning microscopy and scanning electron microscopy. The mechanical properties and uronic acid contents of the scaffolds were tested.Our results showed that cultivation in a bioreactor improved the growth and viability of the chondrocytes in the PLDLA scaffolds. Cells were observed both on and in between the fibrils of scaffold. Furthermore, chondrocytes cultured in the bioreactor, regained their original round phenotypes, whereas those in the static flask culture were flattened in shape. Confocal microscopy revealed that chondrocytes from the bioreactor were attached on both sides of the scaffold and sustained viability better during the culture period. Uronic acid contents of the scaffolds, cultured in bioreactor, were significantly higher than in those cultured in static flasks for 4 weeks. In summary, our data suggests that the bioreactor is superior over the static flask culture when culturing chondrocytes in knitted PLDLA scaffold.
机译:在本研究中,牛软骨细胞在两种不同的环境(静态烧瓶和生物反应器)中培养,在编织的聚-L,D-丙交酯(PLDLA)支架上长达4周。通过使用细胞活力荧光标记来评估软骨细胞活力。使用共聚焦激光扫描显微镜和扫描电子显微镜可视化细胞。测试支架的机械性能和尿酸酸含量。结果表明,生物反应器中的培养改善了PLDLA支架中软骨细胞的生长和活力。在支架的原纤维之间观察到细胞。此外,在生物反应器中培养的软骨细胞重新培养它们的原始圆形表型,而静态烧瓶培养物中的那些在形状扁平。共聚焦显微镜揭示了生物反应器中的软骨细胞在支架的两侧附着在培养期间更好地连接在支架的两侧和持续活力。在生物反应器中培养的支架的尿酸含量显着高于静态烧瓶中培养4周的那些。总之,我们的数据表明,在培养针织PLDLA支架中的软骨细胞时,生物反应器在静态烧瓶培养上优越。

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