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首页> 外文期刊>The International journal of oral & maxillofacial implants >Evaluation of a Titanium Surface Treated with Hydroxyapatite Nanocrystals on Osteoblastic Cell Behavior: An In Vitro Study
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Evaluation of a Titanium Surface Treated with Hydroxyapatite Nanocrystals on Osteoblastic Cell Behavior: An In Vitro Study

机译:羟基磷灰石纳米晶体对骨细胞细胞行为治疗钛表面的评价:体外研究

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Purpose: In the context of macrostructural and microstructural modifications to the design of dental implants, surface topography changes with different treatments have the purpose of accelerating bone formation. The aim of this study was to evaluate in vitro the influence of aggregated hydroxyapatite nanocrystals to surfaces treated with double acid etching (Nano) on osteoblastic cell behavior compared with a conventional double acid-etched surface (DE). Materials and Methods: Commercially pure Grade 4 titanium discs (6 x 2 mm) were selected, and both cell proliferation and viability were assessed at 24, 48, and 72 hours using Trypan blue vital dye and MTT, respectively. The expression of type I collagen and osteopontin on such surfaces was evaluated using ELISA. Immunostaining for fibronectin was also performed. Quantitative data were analyzed statistically using two-way analysis of variance (ANOVA) followed by Bonferroni post-test with a 5% significance level. Results: The results showed that in all evaluated time periods, cells expressed fibronectin on both surfaces. The cells presented greater morphologic spreading on the Nano surface when compared with the conventional DE surface in all assessed times. Increased cell proliferation and viability were detected in the Nano surface (P .05) when compared with the conventional DE surface, especially after 72 hours. Osteopontin expression was higher after 24 hours in the Nano surface when compared with the conventional DE surface (P .05). For type I collagen, a higher expression was observed with the Nano surface than with the DE surface, again after 72 hours (P .05). Conclusion: This in vitro study showed that the treated Nano surface tested promoted increased cell proliferation and viability when compared with the control surface. Additionally, increased cell spreading as well as type I collagen and osteopontin secretion were observed, favoring the early events of osseointegration.
机译:目的:在宏观结构和微观结构修改的背景下对牙科植入物的设计,表面形貌随着不同的处理而变化,具有加速骨形成的目的。该研究的目的是评估聚集的羟基磷灰石纳米晶体对用常规双酸蚀刻表面(DE)相比用双酸蚀刻(纳米)处理的胚乳蚀刻(纳米)处理的表面的影响。材料和方法:选择商业纯的4级钛椎间盘(6×2mm),分别使用台盼蓝色重要染料和MTT分别在24,48和72小时进行细胞增殖和活力。使用ELISA评估I型Ⅰ型胶原蛋白和骨桥蛋白的表达。还进行了用于纤连蛋白的免疫染色。使用双向分析的差异(ANOVA)进行统计分析定量数据,然后用Bonferroni进行5%的显着性水平。结果:结果表明,在所有评估的时间段中,细胞在两个表面上表达了纤连蛋白。与所有评估时间相比,该细胞在纳米表面上呈现更大的形态展开。与常规的DE表面相比,在纳米表面(P <。05)中检测细胞增殖和活力增加,特别是在72小时后。与常规的去表面相比对于I型胶原蛋白,在72小时后再次观察到纳米表面比纳米表面更高的表达(P <。05)。结论:该体外研究表明,与对照表面相比,经处理的纳米表面测试促进细胞增殖和活力增加。另外,观察到增加的细胞扩展以及I型胶原和骨桥蛋白分泌,有利于骨整合的早期事件。

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