首页> 外文期刊>Stem Cell Research & Therapy >Osteocyte-derived exosomes induced by mechanical strain promote human periodontal ligament stem cell proliferation and osteogenic differentiation via the miR-181b-5p/PTEN/AKT signaling pathway
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Osteocyte-derived exosomes induced by mechanical strain promote human periodontal ligament stem cell proliferation and osteogenic differentiation via the miR-181b-5p/PTEN/AKT signaling pathway

机译:通过机械菌株诱导的骨细胞衍生的外泌体通过MIR-181B-5P / PTEN / AKT信号通路促进人牙周韧带干细胞增殖和成骨分化

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BACKGROUND:The oral cavity is a complex environment in which periodontal tissue is constantly stimulated by external microorganisms and mechanical forces. Proper mechanical force helps maintain periodontal tissue homeostasis, and improper inflammatory response can break the balance. Periodontal ligament (PDL) cells play crucial roles in responding to these challenges and maintaining the homeostasis of periodontal tissue. However, the mechanisms underlying PDL cell property changes induced by inflammatory and mechanical force microenvironments are still unclear. Recent studies have shown that exosomes function as a means of cell-cell and cell-matrix communication in biological processes.METHODS:Human periodontal ligament stem cells (HPDLSCs) were tested by the CCK8 assay, EdU, alizarin red, and ALP staining to evaluate the functions of exosomes induced by a mechanical strain. MicroRNA sequencing was used to find the discrepancy miRNA in exosomes. In addition, real-time PCR, FISH, luciferase reporter assay, and western blotting assay were used to investigate the mechanism of miR-181b-5p regulating proliferation and osteogenic differentiation through the PTEN/AKT pathway.RESULTS:In this study, the exosomes secreted by MLO-Y4 cells exposed to mechanical strain (Exosome-MS) contributed to HPDLSC proliferation and osteogenic differentiation. High-throughput miRNA sequencing showed that miR181b-5p was upregulated in Exosome-MS compared to the exosomes derived from MLO-Y4 cells lacking mechanical strain. The luciferase reporter assay demonstrated that miR-181b-5p may target phosphatase tension homolog deletion (PTEN). In addition, PTEN was negatively regulated by overexpressing miR-181b-5p. Real-time PCR and western blotting assay verified that miR-181b-5p enhanced the protein kinase B (PKB, also known as AKT) activity and improved downstream factor transcription. Furthermore, miR-181b-5p effectively ameliorated the inhibition of HPDLSC proliferation and promoted HPDLSC induced by inflammation.CONCLUSIONS:This study concluded that exosomes induced by mechanical strain promote HPDLSC proliferation via the miR-181b-5p/PTEN/AKT signaling pathway and promote HPDLSC osteogenic differentiation by BMP2/Runx2, suggesting a potential mechanism for maintaining periodontal homeostasis.
机译:背景:口腔是一种复杂的环境,其中通过外部微生物和机械力不断刺激牙周组织。适当的机械力有助于保持牙周组织稳态,炎症反应不当会破坏平衡。牙周韧带(PDL)细胞在响应这些挑战和维持牙周组织的稳态时起着至关重要的作用。然而,炎症和机械力微环境诱导的PDL细胞性能变化的机制仍不清楚。最近的研究表明,外索肌作为生物方法中的细胞 - 细胞和细胞 - 矩阵通信的手段。方法:通过CCK8测定,EDU,茜素红和ALP染色来测试人牙周韧带干细胞(HPDLSC)以评估机械菌株诱导的外来的功能。 MicroRNA测序用于在外泌体中找到差异miRNA。此外,使用实时PCR,鱼,荧光素酶报告器测定和蛋白质印迹测定来研究通过PTEN / AKT途径调节MiR-181B-5P调节和骨质发生分化的机制。结果:在本研究中,外来肌肉由暴露于机械菌株的MLO-Y4细胞分泌(Exosome-MS)有助于HPDLSC增殖和骨质发生分化。与来自缺乏机械菌株的MLO-Y4细胞的外索体相比,高通量miRNA测序表明MiR181B-5P在外泌体-Smm中上调。荧光素酶报告器测定证明MIR-181B-5P可以靶向磷酸酶张力同源物缺失(PTEN)。此外,PTEN通过过表达MIR-181B-5P负调节。实时PCR和Western印迹测定验证MiR-181B-5P增强了蛋白激酶B(PKB,也称为AKT)活性和改善的下游因子转录。此外,miR-181b-5p有效地改善了HPDLSC增殖和促进炎症诱导的HPDLSC的抑制。结论:该研究得出结论,机械菌株诱导的外来促进通过MIR-181B-5P / PTEN / AKT信号通路和促进HPDLSC增殖BMP2 / RUNX2的HPDLSC成骨分化,表明维持牙周稳态的潜在机制。

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