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首页> 外文期刊>Stem cells international >Hypoxia Promotes Vascular Smooth Muscle Cell (VSMC) Differentiation of Adipose-Derived Stem Cell (ADSC) by Regulating Mettl3 and Paracrine Factors
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Hypoxia Promotes Vascular Smooth Muscle Cell (VSMC) Differentiation of Adipose-Derived Stem Cell (ADSC) by Regulating Mettl3 and Paracrine Factors

机译:缺氧促进血管平滑肌细胞(VSMC)通过调节METT13和旁静脉因子来分化脂肪衍生的干细胞(ADSC)

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摘要

Adipose-derived stem cell (ADSC) is an alternative and less invasive source of mesenchymal stem cells which can be used to develop biological treatment strategies for tissue regeneration, and their therapeutic applications hinge on an understanding of their physiological characteristics. N6-Methyladenosine (m6A) is the most common chemical modification of mRNAs and has recently been revealed to play important roles in cell lineage differentiation and development. However, the role of m6A modification in the vascular smooth muscle cell (VSMC) differentiation of ADSCs remains unclear. Herein, we investigated the expression of N6-adenosine methyltransferases (Mettl3) and demethylases (Fto and Alkbh5) and found that Mettl3 was upregulated in ADSCs undergoing vascular smooth muscle differentiation induction. Moreover, silence of Mettle3 reduced the expression level of VSMC-specific markers, including α-SMA, SM22α, calponin, and SM-MHC. Meanwhile, Mettl3 knockdown also decreased the expression of paracrine factors, including VEGF, HGF, TGF-β, GM-CSF, bFGF, and SDF-1. In addition, our results suggested that hypoxia stress promotes the ADSC differentiate into VMSCs and regulates the secretion of VEGF, HGF, TGF-β, GM-CSF, bFGF, and SDF-1 by mediating Mettl3 gene expression. These observations might contribute to novel progress in understanding the role of epitranscriptomic regulation in the VSMC differentiation of ADSCs and provide a promising perspective for new therapeutic strategies for tissue regeneration.
机译:脂肪衍生的干细胞(ADSC)是间充质干细胞的替代且较少的侵入性来源,可用于开发组织再生的生物处理策略,其治疗应用铰链对其生理特征的理解。 N6-甲基腺苷(M6A)是MRNA最常见的化学改性,最近透露在细胞谱系分化和发育中发挥重要作用。然而,M6A修饰在血管平滑肌细胞(VSMC)分化中的作用仍然不清楚。在此,我们研究了N6-腺苷甲基转移酶(MetT13)和去甲基酶(FTO和ALKBH5)的表达,发现METT13在经历血管平滑肌分化诱导的ADSC中升级。此外,沉默的差异3降低了VSMC特异性标记的表达水平,包括α-SMA,SM22α,Calponin和SM-MHC。同时,MetT13敲低也降低了旁静脉因子的表达,包括VEGF,HGF,TGF-β,GM-CSF,BFGF和SDF-1。此外,我们的结果表明,缺氧应激促进ADSC分化为VMSCs,并通过介导MetT13基因表达调节VEGF,HGF,TGF-β,GM-CSF,BFGF和SDF-1的分泌。这些观察可能有助于了解eAtrAstfradomic调节在ADSC的VSMC分化中的作用,并为组织再生的新治疗策略提供有希望的观点来促进eATrAstfradomic监管的进展。

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