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首页> 外文期刊>Journal of cellular biochemistry. >Generation of Immortalized Equine Chondrocytes With Inducible Sox9 Expression Allows Control of Hypertrophic Differentiation
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Generation of Immortalized Equine Chondrocytes With Inducible Sox9 Expression Allows Control of Hypertrophic Differentiation

机译:具有诱导型SOX9表达的永生化的马软骨细胞允许控制肥厚分化

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Immortalization of chondrocytes enables long term in vitro culture; however, the chondrogenic capacity of transformed cells varies, thus highlighting the need to develop a proliferative and tuneable chondrocyte cell line where hypertrophic differentiation can be controlled. In this study the SV40 large T antigen and human telomerase reverse transcriptase were employed to immortalize pooled equine chondrocytes through lentiviral vector mediated transduction either singly or on combination. Transformed chondrocytes proliferated stably over multiple passages, but resulted in significantly lower expression of chondrocyte specific collagen II mRNA (P<0.0001) and up regulation of the hypertrophic marker collagen X (P<0.0001) in three dimensional cultures. A Col2a1 promoter driven GFP reporter was constructed for real time monitoring of chondrogenic differentiation and a significant increase in promoter activation was observed in cultures treated with the growth factor TGF-3 (P<0.05). To recapitulate the native articular chondrocyte phenotype we further transduced large T antigen immortalized chondrocytes with lentiviral vectors allowing either constitutive or doxycycline inducible expression of Sox9. In 3D cultures, the Sox9 over-expressing chondrocytes secreted significantly higher levels of extracellular matrix polysaccharide glycosaminoglycan (P<0.05), while up-regulating collagen II and Aggrecan mRNA (P<0.05) in both expression systems with a similar patterns observed with imunohistochemical staining. High levels of collagen X mRNA and protein were maintained with constitutive sox9 reflecting hypetrophic differentiation but significantly lower expression could be achieved with inducible Sox9. In conclusion, immortalization of equine chondrocytes results in stable proliferation but a reduction of chondrogenic potential whilst modulation of sox9 expression enabled control of hypertrophic characteristics. J. Cell. Biochem. 118: 1201-1215, 2017. (c) 2016 Wiley Periodicals, Inc.
机译:软骨细胞的永生化能够长期体外培养;然而,转化细胞的软骨化能力变化,从而突出了开发增殖和可调性的软骨细胞系的需要,可以控制肥厚分化。在该研究中,使用SV40大T抗原和人端粒酶逆转转录酶通过单独或组合通过慢病毒载体介导的转导的慢病毒载体的转导。转化的软骨细胞在多个通道上稳定增殖,但导致软骨细胞特异性胶原II mRNA的显着降低了三维培养物中的软骨细胞特异性胶原II mRNA(P <0.0001)的表达及升高的肥厚标记胶原X(P <0.0001)。 COL2A1启动子驱动的GFP报告器被构建用于实时监测软骨化分化,并在用生长因子TGF-3处理的培养物中观察到启动子活化的显着增加(P <0.05)。为了重新承载本机关节性软骨型表型,我们进一步转导的大T抗原永生化软骨细胞与慢病毒载体的细胞胶质细胞,允许SOX9的组成型或多屈曲诱导的表达。在3D培养物中,SOx9过度表达的软骨细胞分泌显着较高水平的细胞外基质多糖糖胺聚糖(P <0.05),同时在具有与Imunohistochical的类似模式的表达系统中调节胶原II和蛋白mRNA(P <0.05)。染色。高含量的胶原曲线X mRNA和蛋白质与反映过度分化的组成SOx9保持,但可以通过诱导SOx9实现显着较低的表达。总之,马软骨细胞的永生化导致稳定的增殖,而是降低了软骨潜力,同时调节SOX9表达的调节,使得能够控制肥厚特性。 J.Cell。生物学习。 118:1201-1215,2017。(c)2016年Wiley期刊,Inc。

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