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首页> 外文期刊>Journal of Applied Oral Science >Combined effects of melatonin and FGF-2 on mouse preosteoblast behavior within interconnected porous hydroxyapatite ceramics - in vitro analysis
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Combined effects of melatonin and FGF-2 on mouse preosteoblast behavior within interconnected porous hydroxyapatite ceramics - in vitro analysis

机译:褪黑素和FGF-2对互连多孔羟基磷灰石陶瓷中小鼠成骨细胞行为的联合作用-体外分析

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摘要

Objective Biocompatible materials such as interconnected porous hydroxyapatite ceramics (IP-CHA) loaded with osteogenic cells and bioactive agents are part of an evolving concept for overcoming craniofacial defects by use of artificial bone tissue regeneration. Amongst the bioactive agents, melatonin (MEL) and basic fibroblast growth factor (FGF-2) have been independently reported to induce osteoblastic activity. The present in vitro study was undertaken to examine the relationship between these two bioactive agents and their combinatory effects on osteoblastic activity and mineralization in vitro . Material and Methods Mouse preosteoblast cells (MC3T3-E1) were seeded and cultured within cylindrical type of IP-CHA block (?? 4x7 mm) by vacuum-assisted method. The IP-CHA/MC3T3 composites were subjected to FGF-2 and/or MEL. The proliferation assay, alkaline phosphatase enzyme activity (ALP), mRNA expressions of late bone markers, namely Osteocalcin (OCN) and Osteopontin (OPN), and Alizarin Red staining were examined over a period of 7 days. Results FGF-2 mainly enhanced the proliferation of MC3T3-E1 cells within the IP-CHA constructs. MEL mainly induced the mRNA expression of late bone markers (OCN and OPN) and showed increased ALP activity of MC3T3 cells cultured within IP-CHA construct. Moreover, the combination of FGF-2 and MEL showed increased osteogenic activity within the IP-CHA construct in terms of cell proliferation, upregulated expressions of OCN and OPN, increased ALP activity and mineralization with Alizarin Red. The synergy of the proliferative potential of FGF-2 and the differentiation potential of MEL showed increased osteogenic activity in MC3T3-E1 cells cultured within IP-CHA constructs. Conclusion These findings indicate that the combination of FGF-2 and MEL may be utilized with biocompatible materials to attain augmented osteogenic activity and mineralization.
机译:目的生物相容性材料,例如装载成骨细胞和生物活性剂的互连多孔羟基磷灰石陶瓷(IP-CHA),是通过使用人工骨组织再生克服颅面缺陷的不断发展的概念的一部分。在生物活性剂中,褪黑素(MEL)和碱性成纤维细胞生长因子(FGF-2)已被独立报道可诱导成骨细胞活性。目前的体外研究是为了检验这两种生物活性剂之间的关系及其组合对体外成骨细胞活性和矿化的影响。材料和方法将小鼠前成骨细胞(MC3T3-E1)播种并通过真空辅助法在圆柱形IP-CHA块(约4×7 mm)中培养。 IP-CHA / MC3T3复合材料经过FGF-2和/或MEL。在7天的时间内检查了增殖测定,碱性磷酸酶活性(ALP),晚期骨标记物Osteocalcin(OCN)和Osteopontin(OPN)的mRNA表达以及茜素红染色。结果FGF-2主要增强IP-CHA构建体中MC3T3-E1细胞的增殖。 MEL主要诱导晚期骨标志物(OCN和OPN)的mRNA表达,并显示IP-CHA构建物中培养的MC3T3细胞的ALP活性增加。此外,FGF-2和MEL的组合在细胞增殖,OCN和OPN的表达上调,ALP活性增加以及用茜素红矿化方面显示出IP-CHA构建体内的成骨活性增加。 FGF-2增殖潜能与MEL分化潜能的协同作用表明,在IP-CHA构建体中培养的MC3T3-E1细胞中成骨活性增强。结论这些发现表明,FGF-2和MEL的组合可与生物相容性材料一起使用,以增强成骨活性和矿化作用。

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