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Comparative Analysis of Tenogenic Gene Expression in Tenocyte-Derived Induced Pluripotent Stem Cells and Bone Marrow-Derived Mesenchymal Stem Cells in Response to Biochemical and Biomechanical Stimuli

机译:对生物化学和生物力学刺激的胎儿衍生诱导多能干细胞和骨髓衍生间充质干细胞胎生成基因表达的比较分析

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The tendon is highly prone to injury, overuse, or age-related degeneration in both humans and horses. Natural healing of injured tendon is poor, and cell-based therapeutic treatment is still a significant clinical challenge. In this study, we extensively investigated the expression of tenogenic genes in equine bone marrow mesenchymal stem cells (BMSCs) and tenocyte-derived induced pluripotent stem cells (teno-iPSCs) stimulated by growth factors (TGF- β 3 and BMP12) combined with ectopic expression of tenogenic transcription factor MKX or cyclic uniaxial mechanical stretch. Western blotting revealed that TGF- β 3 and BMP12 increased the expression of transcription factors SCX and MKX in both cells, but the tenocyte marker tenomodulin (TNMD) was detected only in BMSCs and upregulated by either inducer. On the other hand, quantitative real-time PCR showed that TGF- β 3 increased the expression of EGR1 , COL1A2 , FMOD , and TNC in BMSCs and SCX , COL1A2 , DCN , FMOD , and TNC in teno-iPSCs. BMP12 treatment elevated SCX , MKX , DCN , FMOD , and TNC in teno-iPSCs. Overexpression of MKX increased SCX , DCN , FMOD , and TNC in BMSCs and EGR1 , COL1A2 , DCN , FMOD , and TNC in teno-iPSCs; TGF- β 3 further enhanced TNC in BMSCs. Moreover, mechanical stretch increased SCX , EGR1 , DCN , ELN , and TNC in BMSCs and SCX , MKX , EGR1 , COL1A2 , DCN , FMOD , and TNC in teno-iPSCs; TGF- β 3 tended to further elevate SCX , ELN , and TNC in BMSCs and SCX , MKX , COL1A2 , DCN , and TNC in teno-iPSCs, while BMP12 further uptrended the expression of SCX and DCN in BMSCs and DCN in teno-iPSCs. Additionally, the aforementioned tenogenic inducers also affected the expression of signaling regulators SMAD7 , ETV4 , and SIRT1 in BMSCs and teno-iPSCs. Taken together, our data demonstrate that, in respect to the tenocyte-lineage-specific gene expression, BMSCs and teno-iPSCs respond differently to the tenogenic stimuli, which may affect the outcome of their application in tendon repair or regeneration.
机译:肌腱在人类和马匹中高度易于损伤,过度使用或与年龄相关的退化。受伤肌腱的自然愈合差,细胞的治疗治疗仍然是一个显着的临床挑战。在这项研究中,我们广泛地研究了由生长因子(TGF-β3和BMP12)刺激的马骨髓间充质干细胞(BMSCs)和胞胎衍生的诱导多能干细胞(TGF-β3和BMP12)刺激的胎生物基因的表达胎元转录因子MKX或循环单轴机械拉伸的表达。 Western印迹显示TGF-β3和BMP12增加了在两个细胞中的转录因子SCX和MKX的表达,但仅在BMSC中检测到胞胎细胞标志物催情素(TNMD)并通过诱导剂上调。另一方面,定量实时PCR显示TGF-β3增加了EGR1,COL1A2,FMOD和TNC在BMSC和SCX,COL1A2,DCN,FMOD和TNC中的表达式在Teno-IPSC中。 BMP12处理高架SCX,MKX,DCN,FMOD和TNC在Teno-IPSCS中。在BMSCS和EGR1,COL1A2,DCN,FMOD和TNC中增加SCX,DCN,FMOD和TNC的SCX,DCN,FMOD和TNC中的过度表达; TGF-β3进一步增强BMSCs的TNC。此外,BMSCS和SCX,MKX,EGR1,COL1A2,DCN,FMOD和TNC中的机械拉伸增加了SCX,EGR1,DCN,ELN和TNC,在Teno-IPSC中; TGF-β3在BMSC和SCX,MKX,COL1A2,DCN和TNC中进一步升高SCX,ELN和TNC,而BMP12进一步向上调动了BMSCS和DCN在Teno-IPSC中的SCX和DCN的表达。另外,上述胎元诱导剂还影响了BMSC和Teno-IPSC中的信号调节剂Smad7,Etv4和Sirt1的表达。在一起,我们的数据表明,就特异性特异性特异性基因表达,BMSC和Teno-IPSCs对遗传刺激的反应不同,这可能影响其在肌腱修复或再生中的应用结果。

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