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首页> 外文期刊>Journal of periodontal research >Spheroid culture enhances osteogenic potential of periodontal ligament mesenchymal stem cells
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Spheroid culture enhances osteogenic potential of periodontal ligament mesenchymal stem cells

机译:球体培养增强了牙周韧带间充质干细胞的成骨潜力

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摘要

Objective and Background Human periodontal ligament mesenchymal stem cells (hPDLMSCs) are reported to be responsible for homeostasis and regeneration of periodontal tissue. Although hPDLMSCs are commonly cultured in monolayers, monolayer cultures have been reported as inferior to 3‐dimensional cultures such as spheroids, which are spherical clusters of cells formed by self‐assembly. The aim of this study was to examine the osteogenic phenotype of spheroids of hPDLMSCs, compared with monolayer cultures of hPDLMSC, in vitro and in vivo. Material and Methods Spheroids were formed using microwell chips that were tagged with polyethylene glycol. Mesenchymal stem cell (MSC) markers in hPDLMSC spheroids were examined by flow cytometer. Real‐time polymerase chain reaction analysis was examined to measure the expressions of stemness markers and osteogenesis‐related genes in monolayer and spheroid‐cultured hPDLMSCs. Immunofluorescence analysis was performed to confirm protein expressions of stemness markers in PDLMSC spheroids. Nodule formation assay, alkaline phosphatase (ALP) activity assay and transplantation assay in a mouse calvarial defect model were performed to confirm the osteogenic potential of hPDLMSC spheroids. To elucidate the mechanism of spheroid culture enhanced osteogenesis in hPDLMSCs with osteoinductive medium (OIM), a small interfering RNA (siRNA) assay targeted with secreted frizzled‐related protein 3 (SFRP3) was examined. The levels of SFRP3 expression in monolayer and spheroid‐cultured hPDLMSCs with OIM were measured by real‐time polymerase chain reaction and western blotting analysis. ALP gene expression and ALP activity were examined in SFRP3‐deficient hPDLMSC spheroids. Results The hPDLMSC spheroids expressed MSC markers, which were similar to hPDLMSCs grown in monolayer cultures. Intriguingly, the protein and mRNA expressions of transcription factors that regulate “stemness” were significantly increased in hPDLMSC spheroids, compared with hPDLMSCs in monolayer cultures. Nodule formation by hPDLMSCs was significantly increased in spheroid cultures grown with OIM, compared with monolayer‐cultured hPDLMSCs. ALP activity and expression of osteogenesis‐related genes were also significantly enhanced in hPDLMSC spheroids, compared with monolayer cultures. Treatment with hPDLMSC spheroids significantly enhanced new bone formation in a murine calvarial defect model, compared with hPDLMSCs in monolayer culture. Finally, to elucidate mechanisms by which spheroid culture enhances ALP activation in hPDLMSCs grown with OIM, an siRNA assay was used to manipulate expression of SFRP3, a Wnt signaling antagonist. Knockdown of SFRP3 suppressed ALP gene expression in hPDLMSCs grown in OIM; further, it suppressed ALP activity in spheroid culture. These data suggest that the enhancement of osteogenic potential in hPDLMSC spheroids is regulated through SFRP3‐mediated ALP activation. Conclusion Spheroid cultures of hPDLMSCs may be a novel and useful tool in regenerative medicine.
机译:据报道,目的和背景人牙周韧带间充质干细胞(HPDLMSCs)负责稳态和牙周组织再生。虽然HPDLMSCs在单层中普遍培养,但是单层培养物已被报告为较差的三维培养物,例如球状体,其是通过自组装形成的细胞的球形簇。该研究的目的是检查HPDLMSCs的球状体的成骨表型,与HPDLMSC,体外和体内的单层培养相比。材料和方法使用贴图用聚乙二醇标记的微孔芯片形成球状体。通过流式细胞仪检查HPDLMSC球体中的间充质干细胞(MSC)标记物。检查实时聚合酶链反应分析以测量单层和球状培养的HPDLMSCs中茎秆标记物和骨开发相关基因的表达。进行免疫荧光分析以确认PDLMSC球体中茎秆标记物的蛋白表达。结节形成测定,进行碱性磷酸酶(ALP)活性测定和在小鼠颅脑缺陷模型中的移植测定以确认HPDLMSC球体的骨质发生潜力。为了阐明具有骨诱导介质(OIM)的HPDLMSC中的球体培养增强的骨肉发生的机制,检查了靶向与分泌的细胞混浊相关的蛋白3(SFRP3)的小干扰RNA(siRNA)测定。通过实时聚合酶链式反应和蛋白质印迹分析测量单层和球形培养的HPDLMSCs的SFRP3表达水平。在SFRP3缺陷的HPDLMSC球体中检查ALP基因表达和ALP活性。结果HPDLMSC球体表达MSC标记物,其类似于在单层培养物中生长的HPDLMSCs。与单层培养物中的HPDLMSCS相比,在HPDLMSC球状体中,调节“茎不安”的转录因子的蛋白质和mRNA表达式显着增加。与单层培养的HPDLMSC相比,用OIM生长的球状培养物中HPDLMSCs的结节显着增加。与单层培养物相比,HPDLMSC球体中也显着增强了与单层培养物的αSALP活性和表达相关基因。与单层培养中的HPDLMSC相比,用HPDLMSC染色模型进行了鼠颅骨缺陷模型的新骨形成显着增强。最后,为了阐明具有OIM生长的HPDLMSCs中的球状培养增强ALP活化的机制,使用SiRNA测定来操纵SFRP3,WNT信号传导拮抗剂的表达。 SFRP3的敲低抑制在OIM中生长的HPDLMSC中的ALP基因表达;此外,它抑制了球状培养物中的ALP活性。这些数据表明,通过SFRP3介导的ALP活化来调节HPDLMSC球状体中的骨质发生潜力的增强。结论HPDLMSCs的球形培养物可以是再生医学中的新颖和有用的工具。

著录项

  • 来源
    《Journal of periodontal research 》 |2018年第5期| 共13页
  • 作者单位

    Division of PeriodontologyKyushu Dental UniversityKitakyushu Japan;

    Division of PeriodontologyKyushu Dental UniversityKitakyushu Japan;

    Division of PeriodontologyKyushu Dental UniversityKitakyushu Japan;

    Department of Life and Environment EngineeringThe University of KitakyushuKitakyushu Japan;

    Division of PeriodontologyKyushu Dental UniversityKitakyushu Japan;

    Division of AnatomyKyushu Dental UniversityKitakyushu Japan;

    Institute of Advanced Biomedical Engineering and ScienceTokyo Women's Medical University (TWIns;

    Department of Oral and Maxillofacial SurgerySaitama Medical UniversitySaitama Japan;

    Division of Infections and Molecular BiologyKyushu Dental UniversityKitakyushu Japan;

    Division of Infections and Molecular BiologyKyushu Dental UniversityKitakyushu Japan;

    Division of PeriodontologyKyushu Dental UniversityKitakyushu Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学 ;
  • 关键词

    bone regeneration; osteogenesis; periodontal ligament mesenchymal stem cells; spheroid;

    机译:骨再生;骨质发生;牙周韧带间充质干细胞;球状;

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