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首页> 外文期刊>Cell biology international. >CoCl 2 2 , a mimic of hypoxia, enhances bone marrow mesenchymal stem cells migration and osteogenic differentiation via STAT3 signaling pathway
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CoCl 2 2 , a mimic of hypoxia, enhances bone marrow mesenchymal stem cells migration and osteogenic differentiation via STAT3 signaling pathway

机译:COCL 2 2,缺氧的模仿,增强了骨髓间充质干细胞迁移和通过Stat3信号通路的成骨分化

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摘要

Abstract Mesenchymal stem cells homing and migration is a crucial step during bone fracture healing. Hypoxic environment in fracture site induces bone marrow mesenchymal stem cells (BMSCs) migration, but its mechanism remains unclear. Our previous study and studies by other groups have reported the involvement of signal transducer and activator of transcription 3 (STAT3) pathway in cell migration. However, the role of STAT3 pathway in hypoxia‐induced cell migration is still unknown. In this study, we investigated the role of STAT3 signaling in hypoxia‐induced BMSCs migration and osteogenic differentiation. BMSCs isolated from C57BL/6 male mice were cultured in the presence of cobalt chloride (CoCl 2 ) to simulate intracellular hypoxia. Hypoxia enhanced BMSCs migration, and upregulated cell migration related gene expression, that is, metalloproteinase ( MMP ) 7 , MMP9 , and C‐X‐C motif chemokine receptor 4. Hypoxia enhanced the phosphorylation of STAT3, and cell migration related proteins: c‐jun n‐terminal kinase (JNK), focal of adhesion kinase (FAK), extracellular regulated protein kinases, and protein kinase B 1/2 (ERK1/2). Moreover, hypoxia enhanced expression of osteogenic differentiation marker. Inhibition of STAT3 suppressed the hypoxia‐induced BMSCs migration, cell migration related signaling molecules phosphorylation, and osteogenic differentiation related gene expression. In conclusion, our result indicates that hypoxia‐induced BMSCs migration and osteogenic differentiation is via STAT3 phosphorylation and involves the cooperative activity of the JNK, FAK, and MMP9 signaling pathways.
机译:摘要间充质干细胞归巢和迁移是骨折愈合期间的关键步骤。骨折位点的缺氧环境诱导骨髓间充质干细胞(BMSCs)迁移,但其机制尚不清楚。我们以前的研究和其他群体的研究报告说明信号传感器和转录3(STAT3)途径在细胞迁移中的途径的参与。然而,Stat3途径在缺氧诱导的细胞迁移中的作用仍然是未知的。在这项研究中,我们研究了STAT3信号在缺氧诱导的BMSCs迁移和骨质发生分化中的作用。在氯化钴(COCL 2)存在下培养从C57BL / 6雄性小鼠中分离的BMSCs以模拟细胞内缺氧。缺氧增强BMSCs迁移,以及上调的细胞迁移相关基因表达,即金属蛋白酶(MMP)7,MMP9和C-X-C主题趋化因子受体4.缺氧增强了STAT3的磷酸化,细胞迁移相关蛋白质:C- Jun N-末端激酶(JNK),粘合激酶(FAK),细胞外调节蛋白激酶和蛋白激酶B 1/2(ERK1 / 2)的焦点。此外,缺氧增强了成骨分化标志物的表达。抑制STAT3抑制了缺氧诱导的BMSCs迁移,细胞迁移相关信号分子磷酸化,以及osteogens分化相关基因表达。总之,我们的结果表明,缺氧诱导的BMSCs迁移和成骨分化是通过Stat3磷酸化的,并且涉及JNK,FAK和MMP9信号传导途径的协同活动。

著录项

  • 来源
    《Cell biology international.》 |2018年第10期|共9页
  • 作者单位

    The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei‐MOST) and Key;

    The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei‐MOST) and Key;

    The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei‐MOST) and Key;

    The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei‐MOST) and Key;

    The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei‐MOST) and Key;

    Key Laboratory of Oral MedicineStomatological Hospital of Guangzhou Medical UniversityGuangzhou;

    The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei‐MOST) and Key;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

    cell migration; fracture healing; hypoxia; osteogenic differentiation; STAT3 pathway;

    机译:细胞迁移;骨折愈合;缺氧;成骨分化;Stat3途径;

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