首页> 外文期刊>BioMed research international >3D Dynamic Culture of Rabbit Articular Chondrocytes Encapsulated in Alginate Gel Beads Using Spinner Flasks for Cartilage Tissue Regeneration
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3D Dynamic Culture of Rabbit Articular Chondrocytes Encapsulated in Alginate Gel Beads Using Spinner Flasks for Cartilage Tissue Regeneration

机译:3D兔关节软骨细胞的动态培养包封在藻酸盐凝胶珠粒中使用旋转瓶进行软骨组织再生

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摘要

Cell-based therapy using chondrocytes for cartilage repair suffers from chondrocyte dedifferentiation. In the present study, the effects of an integrated three-dimensional and dynamic culture on rabbit articular chondrocytes were investigated. Cells (passages 1 and 4) were encapsulated in alginate gel beads and cultured in spinner flasks in chondrogenic and chondrocyte growth media. Subcutaneous implantation of the cell-laden beads was performed to evaluate the ectopic chondrogenesis. It was found that cells remained viable after 35 days in the three-dimensional dynamic culture. Passage 1 cells demonstrated a proliferative growth in both media. Passage 4 cells showed a gradual reduction in DNA content in growth medium, which was attenuated in chondrogenic medium. Deposition of glycosaminoglycans (GAG) was found in all cultures. While passage 1 cells generally produced higher amounts of GAG than passage 4 cells, GAG/DNA became similar on day 35 for both cells in growth media. Interestingly, GAG/DNA in growth medium was greater than that in chondrogenic medium for both cells. Based on GAG quantification and gene expression analysis, encapsulated passage 1 cells cultured in growth medium displayed the best ectopic chondrogenesis. Taken together, the three-dimensional and dynamic culture for chondrocytes holds great potential in cartilage regeneration.
机译:基于细胞的疗法使用软骨细胞进行软骨修复,患有软骨细胞消除剂。在本研究中,研究了综合三维和动态培养对兔关节软骨细胞的影响。细胞(通道1和4)包封在藻酸盐凝胶珠中,并在软骨生成和软骨细胞生长培养基中的旋转瓶中培养。进行皮下植入细胞升降珠,以评估异位软骨发生。结果发现,在三维动态培养35天后,细胞保持不变。通道1细胞显示了两种培养基的增殖生长。通过4细胞显示在软骨培养基中衰减的生长培养基中的DNA含量逐渐降低。在所有培养物中发现糖胺聚糖(GAG)的沉积。虽然通道1细胞通常产生较高量的Gag而不是通过4细胞,但Gag / DNA在生长培养基中的两种细胞的第35天变得相似。有趣的是,生长培养基中的GAG / DNA大于两种细胞的软骨培养基中。基于GAG定量和基因表达分析,在生长培养基中培养的包封剂1细胞显示出最佳的异位软骨发生。在一起,软骨细胞的三维和动态培养物具有巨大的软骨再生潜力。

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