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Premature Osteoblast Clustering by Enamel Matrix Proteins Induces Osteoblast Differentiation through Up-Regulation of Connexin 43 and N-Cadherin

机译:釉质基质蛋白过早成骨细胞簇通过上调连接蛋白43和N-钙黏着蛋白诱导成骨细胞分化。

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摘要

In recent years, enamel matrix derivative (EMD) has garnered much interest in the dental field for its apparent bioactivity that stimulates regeneration of periodontal tissues including periodontal ligament, cementum and alveolar bone. Despite its widespread use, the underlying cellular mechanisms remain unclear and an understanding of its biological interactions could identify new strategies for tissue engineering. Previous in vitro research has demonstrated that EMD promotes premature osteoblast clustering at early time points. The aim of the present study was to evaluate the influence of cell clustering on vital osteoblast cell-cell communication and adhesion molecules, connexin 43 (cx43) and N-cadherin (N-cad) as assessed by immunofluorescence imaging, real-time PCR and Western blot analysis. In addition, differentiation markers of osteoblasts were quantified using alkaline phosphatase, osteocalcin and von Kossa staining. EMD significantly increased the expression of connexin 43 and N-cadherin at early time points ranging from 2 to 5 days. Protein expression was localized to cell membranes when compared to control groups. Alkaline phosphatase activity was also significantly increased on EMD-coated samples at 3, 5 and 7 days post seeding. Interestingly, higher activity was localized to cell cluster regions. There was a 3 fold increase in osteocalcin and bone sialoprotein mRNA levels for osteoblasts cultured on EMD-coated culture dishes. Moreover, EMD significantly increased extracellular mineral deposition in cell clusters as assessed through von Kossa staining at 5, 7, 10 and 14 days post seeding. We conclude that EMD up-regulates the expression of vital osteoblast cell-cell communication and adhesion molecules, which enhances the differentiation and mineralization activity of osteoblasts. These findings provide further support for the clinical evidence that EMD increases the speed and quality of new bone formation in vivo.
机译:近年来,牙釉质基质衍生物(EMD)的表观生物活性刺激牙周组织(包括牙周韧带,牙骨质和牙槽骨)的再生,在牙科领域引起了广泛兴趣。尽管其广泛使用,其潜在的细胞机制仍不清楚,对其生物学相互作用的理解可以确定组织工程学的新策略。先前的体外研究表明,EMD可在早期时间点促进过早的成骨细胞聚集。本研究的目的是评估通过免疫荧光成像,实时荧光定量PCR和免疫荧光法评估的细胞聚集对成骨细胞与细胞之间重要的通信和粘附分子,连接蛋白43(cx43)和N-钙粘蛋白(N-cad)的影响。蛋白质印迹分析。此外,使用碱性磷酸酶,骨钙素和冯·科萨(von Kossa)染色定量了成骨细胞的分化标记。 EMD在2到5天的早期时间点显着增加连接蛋白43和N-钙黏着蛋白的表达。与对照组相比,蛋白质表达局限于细胞膜。接种后3、5和7天,EMD涂层样品的碱性磷酸酶活性也显着提高。有趣的是,更高的活性局限于细胞簇区域。在EMD涂层培养皿上培养的成骨细胞的骨钙素和骨唾液蛋白mRNA水平增加了3倍。此外,EMD显着增加了细胞簇中细胞外矿物质的沉积,这是通过在播种后5、7、10和14天通过von Kossa染色评估的。我们得出结论,EMD上调重要的成骨细胞与细胞之间的通信和粘附分子的表达,从而增强了成骨细胞的分化和矿化活性。这些发现为EMD提高体内新骨形成的速度和质量的临床证据提供了进一步的支持。

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