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Effects of enamel matrix derivative on the proliferation and osteogenic differentiation of human gingival mesenchymal stem cells

机译:釉基质衍生物对人牙龈间充质干细胞增殖和成骨分化的影响

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Introduction Gingiva-derived mesenchymal stem cells (GMSCs) have recently been harvested and applied for rebuilding lost periodontal tissue. Enamel matrix derivative (EMD) has been used for periodontal regeneration and the formation of new cementum with inserting collagen fibers; however, alveolar bone formation is minimal. Recently, EMD has been shown to enhance the proliferation and mineralization of human bone marrow mesenchymal stem cells. Because the gingival flap is the major component to cover the surgical wound, the effects of EMD on the proliferation and mineralization of GMSCs were evaluated in the present study. Methods After single cell suspension, the GMSCs were isolated from the connective tissues of human gingiva. The colony forming unit assay of the isolated GMSCs was measured. The expression of stem cell markers was examined by flow cytometry. The cellular telomerase activity was identified by polymerase chain reaction (PCR). The osteogenic, adipogenic and neural differentiations of the GMSCs were further examined. The cell proliferation was determined by MTS assay, while the expression of mRNA and protein for mineralization (including core binding factor alpha, cbfα-1; alkaline phosphatase, ALP; and osteocalcin, OC; ameloblastin, AMBN) were analyzed by real time-PCR, enzyme activity and confocal laser scanning microscopy. Results The cell colonies could be easily identified and the colony forming rates and the telomerase activities increased after passaging. The GMSCs expressed high levels of surface markers for CD73, CD90, and CD105, but showed low expression of STRO-1. Osteogenic, adipogenic and neural differentiations were successfully induced. The proliferation of GMSCs was increased after EMD treatment. ALP mRNA was significantly augmented by treating with EMD for 3?hours, whereas AMBN mRNA was significantly increased at 6?hours after EMD treatment. The gene expression of OC was enhanced at the dose of 100?μg/ml EMD at day 3. Increased protein expression for cbfα-1 at day 3, for ALP at day 5 and 7, and for OC at week 4 after the EMD treatments were observed. Conclusions Human GMSCs could be successfully isolated and identified. EMD treatments not only induced the proliferation of GMSCs but also enhanced their osteogenic differentiation after induction.
机译:引言最近,牙龈间充质干细胞(GMSCs)已被收获并用于重建丢失的牙周组织。牙釉质基质衍生物(EMD)已被用于牙周再生和插入胶原纤维的新牙骨质的形成。但是,牙槽骨的形成极少。最近,EMD已显示可增强人骨髓间充质干细胞的增殖和矿化作用。由于牙龈瓣是覆盖手术伤口的主要成分,因此在本研究中评估了EMD对GMSC增殖和矿化的影响。方法单细胞悬浮后,从人牙龈结缔组织中分离出间充质干细胞。测量分离的GMSC的菌落形成单位测定。通过流式细胞术检查干细胞标志物的表达。通过聚合酶链反应(PCR)鉴定细胞端粒酶活性。进一步检查了GMSC的成骨,成脂和神经分化。用MTS法测定细胞增殖,同时通过实时PCR分析用于矿化的mRNA和蛋白(包括核心结合因子α,cbfα-1;碱性磷酸酶,ALP;骨钙蛋白,OC;成釉细胞蛋白,AMBN)的表达。 ,酶活性和共聚焦激光扫描显微镜。结果传代后细胞集落易于识别,集落形成率和端粒酶活性增加。 GMSC表达高水平的CD73,CD90和CD105表面标记,但STRO-1表达低。成骨,成脂和神经分化被成功诱导。 EMD处理后,GMSC的增殖增加。通过EMD处理3小时,ALP mRNA显着增加,而EMD处理后6小时,AMBN mRNA显着增加。在EMD处理后第3天,以100?μg/ ml EMD的剂量,OC的基因表达增强了,在第3天,cbfα-1的蛋白表达增加,在第5天和第7天的ALP和第4周的OC的蛋白表达增加。被观察。结论可以成功分离和鉴定人GMSC。 EMD治疗不仅诱导了GMSC的增殖,而且诱导后增强了其成骨分化。

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