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首页> 外文期刊>Pathology oncology research: POR >Berberine Promotes Osteogenic Differentiation of Human Dental Pulp Stem Cells Through Activating EGFR-MAPK-Runx2 Pathways
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Berberine Promotes Osteogenic Differentiation of Human Dental Pulp Stem Cells Through Activating EGFR-MAPK-Runx2 Pathways

机译:Berberine通过激活EGFR-MAPK-RUNX2途径促进人牙髓干细胞的成骨分化

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摘要

Similar to the mesenchymal stem cells (MSCs), dental pulp stem cells (DPSCs) also have pluripotent differentiation characteristic and may be more ideal for tissue regeneration, especially in tooth regeneration engineering. However, bacterial infection may be a powerful obstacle. Berberine (BBR), known with antibacterial effects, was recently found to play functions in bone formation through promoting osteogenic differentiation from pluripotent stem cells. However, whether BBR also function in DPSCs osteogenic differentiation has not yet been reported. Primary DPSCs were isolated from dental pulp tissues extracted from human impacted mandibular third molars, and identified by flow cytometry for cell surface antigen molecules. A dexamethasone osteogenic medium was used to induce DPSCs osteogenic differentiation. BBR (1M and 5M) was pre-added to into medium, and then cell proliferation, spheroid formation and osteogenic differentiation capacities of DPSCs were analyzed, as well as the underlying molecules modulation mechanism. Flow cytometry identified that CD44, CD90, CD81 and CD105 positively expressed in the isolated hDPSCs, with CD34 and CD45 negetively expressed. BBR enhanced the cell proliferation of hDPSCs in a dose-dependent pattern, and promoted dexamethasone-induced osteogenic differentiation via enhancing Runx2 transcription factor activity followed by upregulating osteogenesis markers expression, whereas the adipogenic differentiation of hDPSCs was suppressed dramatically by BBR. The EGFR and MAPK pathways were activated by BBR, and inhibitors for these pathways significantly suppressed the osteogenic differentiation promotion of BBR. These results have revealed a novel mechanism that berberine might promote hDPSCs osteogenic differentiation through activating EGFR-MAPK-Runx2 signaling pathways.
机译:类似于间充质干细胞(MSCs),牙科纸浆干细胞(DPSC)也具有多能分化特性,并且可能更适合于组织再生,特别是在牙齿再生工程中。然而,细菌感染可能是一个强大的障碍。最近发现抗菌作用的Berberine(BBR)通过促进从多能干细胞的骨质发生分化来发挥骨形成的功能。但是,BBR是否还在DPSCS osteogenic分化中的功能尚未报告。从从人撞击下颌三臼齿提取的牙科纸浆组织中分离出初级DPSC,并通过用于细胞表面抗原分子的流式细胞术鉴定。使用地塞米松成骨培养基诱导DPSCS骨质发生分化。将BBR(1M和5M)预先加入到培养基中,然后分析细胞增殖,球形形成和DPSCs的骨质发生分化能力,以及潜在的分子调节机制。流式细胞术确定CD44,CD90,CD81和CD105在分离的HDPSC中呈正表达,用CD34和Negeted表达CD45。 BBR增强了剂量依赖性模式的HDPSC的细胞增殖,并通过增强RUNX2转录因子活性促进了地塞塞酮诱导的骨质发生分化,然后提高了骨开发标志物表达,而BBR急剧地抑制HDPSC的脂肪生成分化。 EGFR和MAPK途径由BBR激活,并且这些途径的抑制剂显着抑制了BBR的成骨分化促进。这些结果揭示了通过激活EGFR-MAPK-RUNX2信号通路来促进HDPSCS osteogenic分化的新型机制。

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