首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >In Vitro Evaluation of Pro Root MTA, Biodentine, and MM-MTA on Human Alveolar Bone Marrow Stem Cells in Terms of Biocompatibility and Mineralization
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In Vitro Evaluation of Pro Root MTA, Biodentine, and MM-MTA on Human Alveolar Bone Marrow Stem Cells in Terms of Biocompatibility and Mineralization

机译:在生物相容性和矿化方面对人牙槽骨骨髓干细胞的原根MTA,Biodentine和MM-MTA进行体外评估

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Introduction: Stem cell technology has been a great hope for the regeneration of cells of pulp-dentin complex and dental structures together with surrounding bone and periodontium. The main challenge in the regeneration process is a successful combination of stem cells and efficient inductors such as inductive bio-materials. In this regard, today, manufacturers propose novel tooth filling materials. The current study was aimed to compare the effect of Pro Root MTA (Dentsply Tulsa Dental, Tulsa, OK), Biodentine (Septodont, Saint Maur des Fosses, France), and MM-MTA (Micro-Mega, Besancon Cedex, France) on the cell viability, hard tissue deposition capacity, and osteogenic differentiation of human bone marrow stem cells (hBMSCs) derived from mandibular bone. Methods: Dental materials were packed into Teflon rings (Grover Corp, Milwaukee, WI) and placed on Transwell inserts (Corning, Corning, NY) to determine the toxicity of tooth filling materials by the 3-(4,5-dimethyl-thiazol-2-yl)-5-(3-carboxy-methoxy-phenyl)-2-(4-sulfo-phenyl)-2H tetrazolium assay on days 1, 3, 7, and 14; 20% dimethyl sulfoxide (DMSO) was used as a positive control for the toxicity assay. hBMSCs were characterized by their surface markers with mesenchymal stem cell antibodies. Teflon rings were cocultured with hBMSCs followed by the induction of osteogenic differentiation. The osteogenic differentiation of hBMSCs and hard tissue formation of the materials were evaluated by analyzing the messenger RNA expression levels of osteonectin, Runt-related transcription factor 2, and collagen type, 1A by real-time polymerase chain reaction expression analysis, measurement of alkaline phosphatase activity, and visualization of calcium deposits by alizarin red staining. Results: MTA, Biodentine, and MM-MTA did not exhibit a cytotoxic effect on hBMSCs after 14 days in culture. Even though all the materials significantly stimulate (P < .05) osteogenic differentiation of hBMSCs compared with the negative control, ProRoot MTA showed greater osteoinductivity than Biodentine or MM-MTA according to the messenger RNA expression, alkaline phosphatase, immunocytochemistry, and alizarin red staining data. Conclusions: All of the dental materials used in this study show the osteogenic differentiation potential of hBMSCs. Therefore, newly introduced MM-MTA can also be used as a material of choice in routine dental treatment.
机译:简介:干细胞技术对于牙髓-牙本质复合体和牙齿结构以及周围的骨骼和牙周组织的细胞再生具有巨大的希望。再生过程中的主要挑战是干细胞与高效感应器(例如感应生物材料)的成功结合。在这方面,今天,制造商提出了新颖的牙齿填充材料。当前的研究旨在比较Pro Root MTA(Dentsply Tulsa Dental,Tulsa,OK),Biodentine(Septodont,Saint Maur des Fosses,France)和MM-MTA(Micro-Mega,Besancon Cedex,France)的效果下颌骨来源的人类骨髓干细胞(hBMSC)的细胞活力,硬组织沉积能力和成骨分化。方法:将牙科材料包装到特氟龙环(Grover Corp,密尔沃基,威斯康星州)中,然后放在Transwell插入件(Corning,Corning,NY)上,通过3-(4,5-二甲基-噻唑-在第1、3、7和14天进行2-基)-5-(3-羧基-甲氧基-苯基)-2-(4-磺基-苯基)-2H四唑鎓测定; 20%二甲基亚砜(DMSO)用作毒性测定的阳性对照。 hBMSCs的特征在于其表面标记物与间充质干细胞抗体。将特氟龙环与hBMSCs共培养,然后诱导成骨分化。通过实时聚合酶链反应表达分析,碱性磷酸酶测定,分析骨连接蛋白,Runt相关转录因子2和胶原蛋白1A的信使RNA表达水平,评估hBMSCs的成骨分化和材料的硬组织形成。活性,并通过茜素红染色显现钙沉积。结果:培养14天后,MTA,Biodentine和MM-MTA对hBMSC没有细胞毒性作用。即使所有材料与阴性对照相比均能显着刺激(B <.05)hBMSC的成骨分化,但根据Messenger RNA表达,碱性磷酸酶,免疫细胞化学和茜素红染色,ProRoot MTA的骨诱导性均比Biodentine或MM-MTA高。数据。结论:本研究中使用的所有牙科材料均显示出hBMSCs的成骨分化潜能。因此,新推出的MM-MTA也可以用作常规牙科治疗的首选材料。

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