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首页> 外文期刊>Stem Cell Research & Therapy >Analysis of the characteristics and expression profiles of coding and noncoding RNAs of human dental pulp stem cells in hypoxic conditions
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Analysis of the characteristics and expression profiles of coding and noncoding RNAs of human dental pulp stem cells in hypoxic conditions

机译:低氧条件下人牙髓干细胞编码和非编码RNA的特征和表达谱分析

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Human dental pulp stem cell (DPSC)-mediated regenerative endodontics is a promising therapy for damaged teeth; however, the hypoxic environment in root canals can affect tissue regeneration. In this study, we investigate the characteristics and possible regulatory mechanisms of DPSC function under hypoxic conditions. Human DPSCs were cultured under normoxia (20% O2) and hypoxia (3% O2). DPSC proliferation and osteo/odontogenic differentiation potential were assessed by Cell Counting Kit-8 (CCK8) assay, carboxyfluorescein succinimidyl ester (CFSE) assay, alkaline phosphatase (ALP) activity, Alizarin red staining, real-time RT-PCR assays, and western blot analysis. Microarray and bioinformatic analyses were performed to investigate the differences in the mRNA, lncRNA, and miRNA expression profiles of DPSCs. DPSCs exhibited a more powerful proliferation ability and lower osteo/odontogenic differentiation potential in hypoxic conditions. A total of 60 mRNAs (25 upregulated and 35 downregulated), 47 lncRNAs (20 upregulated and 27 downregulated), and 14 miRNAs (7 upregulated and 7 downregulated) in DPSCs were differentially expressed in the hypoxia group compared with the normoxia group. Bioinformatic analysis identified that 7 mRNAs (GRPR, ERO1L, ANPEP, EPHX1, PGD, ANGPT1, and NQO1) and 5 lncRNAs (AF085958, AX750575, uc002czn.2, RP3-413H6.2, and six-twelve leukemia (STL)) may be associated with DPSCs during hypoxia according to CNC network analysis, while 28 mRNAs (including GYS1, PRKACB, and NQO1) and 13 miRNAs (including hsa-miR-3916 and hsa-miR-192-5p) may be involved according to miRNA target gene network analysis. The depletion of one candidate lncRNA, STL, inhibited the osteo/odontogenic differentiation potentials of DPSCs. Our results revealed that hypoxia could enhance the proliferation ability and impair the osteo/odontogenic differentiation potential of DPSCs in vitro. Furthermore, our results identified candidate coding and noncoding RNAs that could be potential targets for improving DPSC function in regenerative endodontics and lead to a better understanding of the mechanisms of hypoxia’s effects on DPSCs.
机译:人类牙髓干细胞(DPSC)介导的再生牙髓治疗术是一种有前途的牙齿损伤治疗方法。但是,根管缺氧环境会影响组织再生。在这项研究中,我们调查了缺氧条件下DPSC功能的特征和可能的调节机制。在常氧(20%O2)和低氧(3%O2)下培养人DPSC。通过细胞计数试剂盒8(CCK8)测定,羧基荧光素琥珀酰亚胺酯(CFSE)测定,碱性磷酸酶(ALP)活性,茜素红染色,实时RT-PCR测定和Western评估了DPSC增殖和骨/成牙本质分化潜能印迹分析。进行了微阵列和生物信息学分析以研究DPSCs的mRNA,lncRNA和miRNA表达谱的差异。在缺氧条件下,DPSCs表现出更强大的增殖能力和更低的骨/牙源性分化潜能。与常氧组相比,低氧组中DPSC中总共表达了60个mRNA(25个上调和35个下调),47个lncRNA(20个上调和27个下调)和14个miRNA(7个上调和7个下调)。生物信息学分析确定了7个mRNA(GRPR,ERO1L,ANPEP,EPHX1,PGD,ANGPT1和NQO1)和5个lncRNA(AF085958,AX750575,uc002czn.2,RP3-413H6.2和6-12白血病(STL))根据CNC网络分析,在缺氧时可能与DPSC相关,而根据miRNA靶标可能涉及28个mRNA(包括GYS1,PRKACB和NQO1)和13个miRNA(包括hsa-miR-3916和hsa-miR-192-5p)基因网络分析。一种候选lncRNA STL的耗竭抑制了DPSCs的骨/牙源性分化潜能。我们的研究结果表明,缺氧可以增强DPSC的体外增殖能力并损害其成骨/成牙分化潜能。此外,我们的结果确定了候选编码和非编码RNA,它们可能是改善再生牙髓中DPSC功能的潜在靶标,并有助于更好地了解缺氧对DPSC的作用机理。

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