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lncRNA HHIP-AS1 Promotes the Osteogenic Differentiation Potential and Inhibits the Migration Ability of Periodontal Ligament Stem Cells

机译:LNCRNA Himh-AS1促进成骨分化潜力并抑制牙周韧带干细胞的迁移能力

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Alveolar bone remodeling under orthodontic force is achieved by periodontal ligament stem cells (PDLSCs), which are sensitive to mechanical loading. How to regulate functions of PDLSCs is a key issue in bone remodeling during orthodontic tooth movement. This study is aimed at investigating the roles of lncRNA Hedgehog-interacting protein antisense RNA 1 (HHIP-AS1) in the functional regulation of PDLSCs. First, HHIP-AS1 expression was downregulated in PDLSCs under continuous compressive pressure. Then, we found that the alkaline phosphatase activity, in vitro mineralization, and expression levels of bone sialoprotein, osteocalcin, and osterix were increased in PDLSCs by HHIP-AS1. The results of scratch migration and transwell chemotaxis assays revealed that HHIP-AS1 inhibited the migration and chemotaxis abilities of PDLSCs. In addition, the RNA sequencing data showed that 356 mRNAs and 14 lncRNAs were upregulated, including receptor tyrosine kinase-like orphan receptor 2 and nuclear-enriched abundant transcript 1, while 185 mRNAs and 6 lncRNAs were downregulated, including fibroblast growth factor 5 and LINC00973, in HHIP-AS1-depleted PDLSCs. Bioinformatic analysis revealed several biological processes and signaling pathways related to HHIP-AS1 functions, including the PI3K-Akt signaling pathway and JAK-STAT signaling pathway. In conclusion, our findings indicated that HHIP-AS1 was downregulated in PDLSCs under compressive pressure, and it promoted the osteogenic differentiation potential and inhibited the migration and chemotaxis abilities of PDLSCs. Thus, HHIP-AS1 may be a potential target for accelerating tooth movement during orthodontic treatment.
机译:正畸力下的肺泡骨重塑是通过对机械负载敏感的牙周韧带干细胞(PDLSC)来实现的。如何调节PDLSC的功能是牙齿运动期间骨重塑的关键问题。本研究旨在研究LNCRNA刺猬相互作用蛋白反义RNA 1(Hhip-AS1)在PDLSC的功能调节中的作用。首先,在连续压缩压力下在PDLSC中下调Hiple-AS1表达。然后,我们发现,通过Hhip-AS1,PDLSCs在PDLSC中增加了碱性磷酸酶活性,体外矿化和表达水平,骨髓蛋白和Osterix增加。划痕迁移和Transwell趋化性测定结果显示Hhip-As1抑制PDLSCs的迁移和趋化性。此外,RNA测序数据显示,上调356mRNA和14LNCRNA,包括受体酪氨酸激酶样孤儿院2和核富含核丰富的转录物1,而185 mRNA和6 LNCRNA被下调,包括成纤维细胞生长因子5和LINC00973 ,在HIPH-AS1耗尽的PDLSC。生物信息分析揭示了与Hhip-AS1功能相关的几种生物过程和信号传导途径,包括PI3K-AKT信号通路和JAK-STAT信号通路。总之,我们的研究结果表明,在压缩压力下,Hiple-AS1在PDLSC中下调,促进了骨质发生分化潜力并抑制了PDLSC的迁移和趋化性能力。因此,Hhip-AS1可以是用于在正畸治疗期间加速牙齿运动的潜在目标。

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