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miR-129-5p Promotes Osteogenic Differentiation of BMSCs and Bone Regeneration via Repressing Dkk3

机译:MiR-129-5P通过压制DKK3促进BMSCs和骨再生的成骨分化

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Objective . Accumulating evidence indicates that microRNAs (miRNAs) play crucial roles in osteogenic differentiation. However, the associated mechanisms remain elusive. This paper is aimed at exploring the role of miR-129-5p in regulating bone marrow mesenchymal stem cell (BMSC) differentiation and bone regeneration in vivo and in vitro. Methods . BMSCs were transduced by miR-129-5p mimic, miR-129-5p inhibitor, and negative control lentivirus. The ability of BMSC differentiation to osteoblast was tested by alkaline phosphatase (ALP) and alizarin red staining (ARS). The expression of osteogenic genes (Runx2, Bmp2, and OCN) was examined via quantitative RT-PCR and western blot. A mouse model of calvaria defect was investigated by Micro-CT, immunohistochemistry, and histological examination. The luciferase reporter gene assay was performed to confirm the binding between Dkk3 and miR-129-5p. For the transfection experiments, lipofectamine 3000 was used to transfect pcDNA-Dkk3 into BMSCs to overexpress Dkk3. Coimmunoprecipitation and immunofluorescent localization assay were included for exploring the role of Dkk3 and β -catenin. Results . miR-129-5p was induced in BMSCs and MSC cell line C3H10T1/2 cells under osteogenic medium. Overexpression of miR-129-5p significantly promoted osteogenic differentiation of BMSCs in vitro. Moreover, BMSCs transduced with miR-129-5p mimic exhibited better bone regeneration compared with BMSCs transduced with control counterpart in vivo. Luciferase and western blot data showed that Dickkopf3 (Dkk3) is a target gene of miR-129-5p and the expression of Dkk3 was inhibited in BMSCs transduced with miR-129-5p mimic but enhanced in BMSCs transduced with miR-129-5p inhibitor. In addition, Dkk3 interacted with β -catenin directly. Conclusions . miR-129-5p promotes osteogenic differentiation of BMSCs and bone regeneration, and miR-129-5p/Dkk3 axis may be new potential targets for the treatment of bone defect and bone loss.
机译:客观的 。累积证据表明MicroRNA(miRNA)在成骨分化中起关键的作用。然而,相关机制仍然难以捉摸。本文旨在探讨miR-129-5p在体内和体外调节骨髓间充质干细胞(BMSC)分化和骨再生中的作用。方法 。 BMSCs被MiR-129-5P模拟,miR-129-5P抑制剂和阴性对照慢病毒转导。通过碱性磷酸酶(ALP)和茜素红染色(ARS)测试BMSC分化对成骨细胞的能力。通过定量RT-PCR和Western印迹检查成骨基因(RUNX2,BMP2和OCN)的表达。通过微型CT,免疫组织化学和组织学检查研究了CALVARIA缺陷的小鼠模型。进行荧光素酶报告基因测定以确认DKK3和MIR-129-5P之间的结合。对于转染实验,Lipofectamine 3000用于将PCDNA-DKK3转化为BMSCs以过表达DKK3。包括Cimmunopopropipitipition和免疫荧光定位测定以探索DKK3和β-Catenin的作用。结果 。在成骨培养基下在BMSCs和MSC细胞系C3H10T1 / 2细胞中诱导miR-129-5p。 miR-129-5p的过度表达明显促进了体外BMSC的成骨分化。此外,与MIR-129-5P导源的BMSC与在体内用控制对应物转导的BMSC相比,模拟骨再生表现出更好的骨再生。荧光素酶和Western印迹数据显示DickKopf3(DKK3)是miR-129-5p的靶基因,DKK3的表达抑制了用miR-129-5p模拟的BMSC抑制,但在用MiR-129-5P抑制剂转导的BMSC中增强。此外,DKK3直接与β-CATENIN相互作用。结论。 MiR-129-5P促进BMSC和骨再生的骨质发生分化,MIR-129-5P / DKK3轴可能是治疗骨缺损和骨质损失的新潜在靶标。

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