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COL4A2 in the tissue-specific extracellular matrix plays important role on osteogenic differentiation of periodontal ligament stem cells

机译:组织特异性细胞外基质中的COL4A2在牙周膜干细胞成骨分化中起重要作用

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Periodontal ligament stem cells (PDLSCs) can repair alveolar bone defects in periodontitis in a microenvironment context-dependent manner. This study aimed to determine whether different extracellular matrices (ECMs) exert diverse effects on osteogenic differentiation of PDLSCs and accurately control alveolar bone defect repair. Methods : The characteristics of PDLSCs and bone marrow mesenchymal stem cells (BMSCs) with respect to surface markers and multi-differentiation ability were determined. Then, we prepared periodontal ligament cells (PDLCs)-derived and bone marrow cells (BMCs)-derived ECMs (P-ECM and B-ECM) and the related decellularized ECMs (dECMs). Transmission electron microscopy (TEM), scanning electron microscopy (SEM), atomic force microscopy (AFM), and protein mass spectrometry were used to distinguish the ECMs. The expression of Type IV collagen A2 (COL4A2) in the ECMs was inhibited by siRNA or activated by lentiviral transduction of relevant cells. The stemness, proliferation, and differentiation of PDLSCs were determined in vitro in different dECMs. For the in vivo analysis, different dECMs under the regulation of COL4A2 mixed with PDLSCs and Bio-Oss bone powder were subcutaneously implanted into immunocompromised mice or in defects in rat alveolar bone. The repair effects were identified by histological or immunohistochemical staining and micro-CT. Results : B-dECM exhibited more compact fibers than P-dECM, as revealed by TEM, SEM, and AFM. Protein mass spectrometry showed that COL4A2 was significantly increased in B-dECM compared with P-dECM. PDLSCs displayed stronger proliferation, stemness, and osteogenic differentiation ability when cultured on B-dECM than P-dECM. Interestingly, B-dECM enhanced the osteogenic differentiation of PDLSCs to a greater extent than P-dECM both in vitro and in vivo, whereas downregulation of COL4A2 in B-dECM showed the opposite results. Furthermore, the classical Wnt/β-catenin pathway was found to play an important role in the negative regulation of osteogenesis through COL4A2, confirmed by experiments with the Wnt inhibitor DKK-1 and the Wnt activator Wnt3a. Conclusion : These findings indicate that COL4A2 in the ECM promotes osteogenic differentiation of PDLSCs through negative regulation of the Wnt/β-catenin pathway, which can be used as a potential therapeutic strategy to repair bone defects.
机译:牙周膜干细胞(PDLSC)可以微环境相关的方式修复牙周炎中的牙槽骨缺损。这项研究旨在确定不同的细胞外基质(ECM)是否对PDLSC的成骨分化产生多种影响,并准确控制牙槽骨缺损的修复。方法:测定PDLSCs和骨髓间充质干细胞(BMSCs)在表面标志物和多分化能力方面的特征。然后,我们准备了牙周膜细胞(PDLC)和骨髓细胞(BMC)衍生的ECM(P-ECM和B-ECM)以及相关的脱细胞ECM(dECM)。透射电子显微镜(TEM),扫描电子显微镜(SEM),原子力显微镜(AFM)和蛋白质质谱用于区分ECM。 siRNA抑制ECM中IV型胶原蛋白A2(COL4A2)的表达,或通过相关细胞的慢病毒转导激活。在不同的dECMs中体外测定了PDLSC的茎干,增殖和分化。为了进行体内分析,在与PDLSC和Bio-Oss骨粉混合的COL4A2的调节下,将不同的dECM皮下植入免疫受损的小鼠或大鼠牙槽骨的缺损中。通过组织学或免疫组织化学染色和微CT鉴定修复效果。结果:TEM,SEM和AFM显示,B-dECM的纤维比P-dECM紧密。蛋白质质谱分析表明,与P-dECM相比,B-dECM中的COL4A2显着增加。在B-dECM上培养的PDLSC比P-dECM表现出更强的增殖,干性和成骨分化能力。有趣的是,在体外和体内,B-dECM都比P-dECM增强PDLSCs的成骨分化,而B-dECM中COL4A2的下调显示了相反的结果。此外,Wnt抑制剂DKK-1和Wnt激活剂Wnt3a的实验证实,经典的Wnt /β-catenin途径在通过COL4A2负向成骨的过程中起着重要作用。结论:这些发现表明ECM中的COL4A2通过Wnt /β-catenin途径的负调控促进PDLSC的成骨分化,可作为修复骨缺损的潜在治疗策略。

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