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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Integrated data analysis identifies potential inducers and pathways during the endothelial differentiation of bone-marrow stromal cells by DNA methyltransferase inhibitor, 5-aza-2 '-deoxycytidine
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Integrated data analysis identifies potential inducers and pathways during the endothelial differentiation of bone-marrow stromal cells by DNA methyltransferase inhibitor, 5-aza-2 '-deoxycytidine

机译:集成数据分析通过DNA甲基转移酶抑制剂,5-AZA-2'-丁氧基胞苷的骨髓基质细胞内皮分化期间识别潜在的诱导剂和途径

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Bone-Marrow Stromal Cells (BMSCs)-derived vascular endothelial cells (VECs) is regarded as an important therapeutic strategy for spinal cord injury, disc degeneration, cerebral ischemic disease and diabetes. The change in DNA methylation level is essential for stem cell differentiation. However, the DNA methylation related mechanisms underlying the endothelial differentiation of BMSCs are not well understood. In this study, DNA methyltransferase inhibitor, 5-aza-2'-deoxycytidine (5-aza-dC) significantly elevated the endothelial markers expression (CD31/PECAM1, CD105/ENG, eNOS and VE-cadherin), as well as promoted the capacity of angiogenesis on Matrigel. The result of Alexa 488-Ac-LDL uptake assay indicated that the differentiation ratio of BMSCs into VECs was 68.7% in 5-azaz-dC induced differentiation. And then we screened differentiation inducers with altered expression patterns and DNA methylation levels in four important families (VEGF, ANG, FGF and ETS). By integrating these data, five endothelial differentiation inducers (VEGFA, ANGPT2, FGF2, FGF9 and ETS1) which were directly upregulated by 5-aza-dC and five indirect factors (FGF1, FGF3, ETS2, ETV1 and ETV4) were identified. These data suggested that 5-aza-dC is an excellent chemical molecule for BMSCs differentiation into functional VECs and also provided essential clues for DNA methylation related signaling during 5-aza-dC induced endothelial differentiation of BMSCs.
机译:骨髓基质细胞(BMSCs)的血管内皮细胞(VECs)被认为是脊髓损伤,椎间盘退变,脑缺血性疾病和糖尿病的重要治疗策略。 DNA甲基化水平的变化对于干细胞分化是必不可少的。然而,BMSCs内皮分化的DNA甲基化相关机制尚不清楚。在本研究中,DNA甲基转移酶抑制剂,5-α-2'-脱氧胞苷(5-AZA-DC)显着升高了内皮标记表达(CD31 / PECAM1,CD105 / ENG,ENOS和VE-CADHERIN),以及促进了血管生成的能力。 ALEXA 488-AC-LDL摄取测定结果表明,5- azAZ-DC诱导分化的BMSCs进入VEC的分化比为68.7%。然后我们在四个重要的家族(VEGF,Ang,FGF和ETS中,筛选具有改变的表达模式和DNA甲基化水平的分化诱导剂。通过将这些数据集成,鉴定了5 AZA-DC和五种间接因子(FGF1,FGF3,ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1和ETV1)直接上调的五个内皮分化诱导符(VEGFA,AngPT2,FGF2,FGF9和ET1)。这些数据表明,5-AZA-DC是用于BMSCS分化成功能性VEC的优异化学分子,并且还为在5-AZA-DC诱导的BMSC的内皮分化期间提供了DNA甲基化相关信号传导的必要线索。

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