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首页> 外文期刊>Stem cells and development >Effect of Tumor Necrosis Factor Alpha Dose and Exposure Time on Tumor Necrosis Factor-Induced Gene-6 Activation by Neonatal and Adult Mesenchymal Stromal Cells
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Effect of Tumor Necrosis Factor Alpha Dose and Exposure Time on Tumor Necrosis Factor-Induced Gene-6 Activation by Neonatal and Adult Mesenchymal Stromal Cells

机译:肿瘤坏死因子α剂量和暴露时间对新生儿和成年间充质细胞肿瘤坏死因子诱导基因-6活化的影响

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Tumor necrosis factor alpha (TNF-alpha) induced protein 6 is a major anti-inflammatory mediator released by activated mesenchymal stromal cells (MSCs). Neonatal MSCs are considered more metabolically active than cells derived from adult tissues, and potentially less heterogeneous. We hypothesized that a TNF-alpha-activated neonatal MSC population [human umbilical cord perivascular cells (HUCPVCs)] would show an enhanced level of TSG-6 activation compared with adult bone marrow MSCs (BMMSCs). Thus, we stimulated HUCPVCs, and both human BMMSCs (hBMMSCs) and mouse BMMSCs (mBMMSCs) with 1, 10, 50, and 100 ng/mL of recombinant TNF-alpha over various exposure times. Supernatant, and total RNA, of the cells were collected for measurement of both TSG-6 RNA expression, and secreted TSG-6 protein. To compare gene levels, quantification was done by normalizing the expression levels of TSG-6 to the geometric mean of the three most stable reference genes, out of a cohort of 30 tested genes, using the Pfaffl method. We found that HUCPVCs exhibited both an enhanced and more rapid response to low dose (1 ng/mL) TNF-a exposure resulting in similar to 11.5-fold increase in TSG-6 expression within the first 30 min. In contrast, hBMMSCs showed 2-fold increase by 1 h that increased to 9.5-fold with a higher (50 ng/mL) TNF-alpha exposure for the same time. mBMMSCs showed a two-fold increase after 24 h that was independent of TNF-alpha concentration. Thus, although TSG-6 expression level varied among donors, both hMSC populations exhibited enhanced TSG-6 upregulation, upon TNF-alpha stimulation, compared with mBMMSCs. In conclusion, HUCPVCs showed higher sensitivity, and a prompter response to TNF-alpha stimulation compared with hBMMSCs. Thus, neonatal MSCs may be a stronger candidate population than those derived from adult bone marrow to treat inflammatory diseases.
机译:肿瘤坏死因子α(TNF-α)诱导的蛋白6是由活性间充质基质细胞(MSCs)释放的主要抗炎介质。新生儿MSCs被认为比来自成种组织的细胞更加代谢活性,并且潜在的异质性。我们假设TNF-α活化的新生儿MSC群[人脐羽毛血管细胞(HUCPVCS)]与成年骨髓MSC(BMMSCs)相比,TSG-6活化水平增强。因此,我们在各种曝光时间上刺激HUCPVC和LEAL BMMSCs(HBMMSCS)和小鼠BMMSCs(MBMMSCs)重组TNF-α的重组TNF-α。收集细胞的上清液和总RNA,用于测量TSG-6 RNA表达和分泌的TSG-6蛋白。为了比较基因水平,使用PFaFF1方法将TSG-6的表达水平标准化TSG-6至最稳定的参考基因的几何平均值来进行定量。我们发现Hucpvcs表现出对低剂量(1ng / ml)TNF-A暴露的增强和更快速的响应,从而在前30分钟内的TSG-6表达增加到11.5倍。相反,HBMMSCs显示出2倍的增加1小时,其增加至9.5倍,同时具有更高(50ng / ml)TNF-α曝光。 24小时后,MBMMSCs差异无关的TNF-α浓度呈两倍增加。因此,尽管与MBMMSCs相比,供体之间的TSG-6表达水平变化,但HMSC群体在TNF-α刺激上表现出增强的TSG-6上调。总之,HUCPVCS表现出更高的敏感性,与HBMMSCS相比,对TNF-α刺激的显着响应。因此,新生儿MSCs可能是较强的候选人群,而不是来自成年骨髓来治疗炎症性疾病的群体。

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