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首页> 外文期刊>International endodontic journal >Inflammation‐induced overexpression of microRNA‐223‐3p regulates odontoblastic differentiation of human dental pulp stem cells by targeting SMAD3
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Inflammation‐induced overexpression of microRNA‐223‐3p regulates odontoblastic differentiation of human dental pulp stem cells by targeting SMAD3

机译:MicroRNA-223-3P的炎症诱导的过表达通过靶向SMAD3调节人牙髓干细胞的Odontobolic分化

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Abstract Aim To profile miRNA expression between inflamed and healthy human dental pulp tissues and to investigate how the upregulation of miR‐223‐3p in the inflamed pulp tissue regulates odontoblast differentiation and regeneration. Methodology Microarray analysis was used to identify differences in miRNA expression patterns between healthy and inflamed pulp tissue. The results were validated using quantitative real‐time PCR. To determine the effect of miR‐223‐3p on odontoblast differentiation, miR‐223‐3p was overexpressed in human dental pulp stem cells (DPSCs), which were cultured in mineralizing induction medium (to induce odontoblast differentiation). To identify the target genes of miR‐223‐3p, an SABiosciences Human Osteogenesis PCR Array, combined with bioinformatics, was used. Furthermore, a dual‐luciferase reporter assay and a small interfering RNA (siRNA) experiment were used to confirm the relationship between miR‐223‐3p and its target gene. Statistical analysis was performed using the Student's t ‐test or one‐way analysis of variance ( anova ); P ??0.05 was considered statistically significant. Results Seventy‐nine miRNAs were significantly differentially expressed (fold change 2.0; P ??0.05) between the two tissues. In particular, miR‐223‐3p was markedly upregulated in inflamed dental pulp. Overexpression of miR‐223‐3p in DPSCs significantly increased the protein levels of dentine sialophosphoprotein (DSPP) and dentine matrix protein 1 (DMP‐1) ( P ??0.05). However, the SMAD family member 3 (SMAD3) protein level was significantly lower than in control DPSCs ( P ??0.05). Bioinformatics and the dual‐luciferase assay reporter assay indicated that Smad3 was a potential target of miR‐223‐3p. Knockdown of Smad3 in DPSCs subjected to mineralization induction resulted in detection of DSPP and DMP‐1 earlier than in control DPSCs, and it increased the protein level of alkaline phosphatase (ALP), thereby promoting odontoblast differentiation. Conclusions miR‐223‐3p is implicated in the regulation of odontoblast differentiation, which may be involved in the process of pulpitis repair.
机译:摘要旨在突突发炎和健康人牙髓组织之间的miRNA表达,并研究发炎纸巾中miR-223-3p的上调如何调节异藤细胞分化和再生。方法科微阵列分析用于鉴定健康和发炎牙髓组织之间miRNA表达模式的差异。使用定量实时PCR验证结果。为了确定miR-223-3p对Odontoblast分化的影响,MiR-223-3p在人牙齿纸浆干细胞(DPSC)中过表达,其在矿化诱导培养基中培养(诱导Odontoblast分化)。为了鉴定miR-223-3p的靶基因,使用了一种与生物信息学合并的锯旋人骨质发生PCR阵列。此外,使用双荧光素酶报告器测定和小干扰RNA(siRNA)实验来证实miR-223-3p及其靶基因之间的关系。使用学生的T -Test或单向分析进行统计分析(ANOVA); p?β0.05被认为是统计学意义。结果,在两种组织之间,七十九个miRNA显着差异表达(折叠变化&β0;p≤0.05)。特别是,MiR-223-3P在发炎的牙髓中显着上调。 DPSC中miR-223-3p的过表达显着增加了牙本质唾液酸磷蛋白(DSPP)和牙本质基质蛋白1(DMP-1)(P 1)的蛋白质水平增加(DMP-1)(P 1 0.05)。然而,Smad家族构件3(SMAD3)蛋白质水平显着低于对照DPSCs(p≤≤0.05)。生物信息学和双荧光素酶测定报告结果表明Smad3是miR-223-3p的潜在靶标。在经过矿化诱导的DPSC中敲低SMAD3导致DSPP和DMP-1的检测比对照DPSCS更早,并且它增加了碱性磷酸酶(ALP)的蛋白质水平,从而促进了异托细胞分化。结论MIR-223-3P涉及在异常子细胞分化的调节中,这可能参与牙髓炎修复过程。

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