首页> 外文期刊>Human cell: official journal of Human Cell Research Society >Amniotic fluid mesenchymal stem cells repair mouse corneal cold injury by promoting mRNA N4-acetylcytidine modification and ETV4/JUN/CCND2 signal axis activation
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Amniotic fluid mesenchymal stem cells repair mouse corneal cold injury by promoting mRNA N4-acetylcytidine modification and ETV4/JUN/CCND2 signal axis activation

机译:羊水间充质干细胞通过促进mRNA N4-乙酰胞苷改性和ETV4 / JUN / CCND2信号轴激活来修复小鼠角膜冷损伤

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摘要

Severe corneal injury is one of the main causes of loss of visual function. Mesenchymal stem cells (MSCs) have the ability to repair damaged cells in vivo. The present study aimed to explore whether MSCs could function as a cell therapy tool to replace traditional methods to treat corneal injury. CD44 + /CD105 + mesenchymal stem cells isolated from mouse amniotic fluid (mAF-MSCs) were injected into mice after cryoinjury to induce corneal endothelial cell injury. Histopathological assays indicated that mAF-MSCs could promote the growth of corneal epithelial cells, reduce keratitis, and repair the corneal damage caused by low temperature. cDNA microarray analysis revealed that the mAF-MSCs affected the expression patterns of mRNAs related to cell proliferation and differentiation pathways in the mice after transplantation. The results of quantitative real-time PCR and western blotting revealed that NAT12, NAT10, and the ETV4/JUN/CCND2 signaling axis were elevated significantly in the mAF-MSC-transplantation group, compared with those in the phosphate-buffered saline-treated groups. High performance liquid chromatography-mass spectroscopy results revealed that mAF-MSCs could promote mRNA N4-acetylcytidine (ac4C) modification and high expression ofN-acetyltransferase in the eyeballs. RNA immunoprecipitation-PCR results showed that a specific product comprisingVegfa,Klf4,Ccnd2,Jun, andEtv4mRNA specific coding region sites could be amplified using PCR from complexes formed in mAF-MSC-transplanted samples cross-linked with anti-ac4C antibodies. Thus, mouse amniotic fluid MSCs could repair the mouse corneal cold injury by promoting the ETV4/JUN/CCND2 signal axis activation and improving its stability by stimulating N4-acetylcytidine modification of their mRNAs.
机译:严重的角膜损伤是导致视功能丧失的主要原因之一。间充质干细胞(MSCs)具有在体内修复受损细胞的能力。本研究旨在探讨间充质干细胞能否作为一种细胞治疗工具,取代传统的角膜损伤治疗方法。冷冻损伤后,将从小鼠羊水中分离的CD44+/CD105+间充质干细胞(mAF-MSCs)注射到小鼠体内,以诱导角膜内皮细胞损伤。组织病理学检测表明,mAF-MSCs能促进角膜上皮细胞的生长,减轻角膜炎,修复低温引起的角膜损伤。cDNA微阵列分析显示,mAF-MSCs影响小鼠移植后与细胞增殖和分化途径相关的mRNAs的表达模式。定量实时PCR和western印迹结果显示,与磷酸盐缓冲盐水处理组相比,mAF-MSC移植组的NAT12、NAT10和ETV4/JUN/CCND2信号轴显著升高。高效液相色谱-质谱分析结果显示,mAF-MSCs可促进mRNA N4乙酰胞苷(ac4C)修饰和N乙酰转移酶在眼球中的高表达。RNA免疫沉淀PCR结果表明,在mAF-MSC移植样本中形成的与抗ac4C抗体交联的复合物中,可以通过PCR扩增包含VEGFA、Klf4、Ccnd2、Jun和TV4mRNA特异性编码区位点的特异性产物。因此,小鼠羊水间充质干细胞可以通过促进ETV4/JUN/CCND2信号轴的激活,并通过刺激其mRNA的N4乙酰胞苷修饰来改善其稳定性,从而修复小鼠角膜冷损伤。

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