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Effect of flavonoids on the mechanical properties of demineralised dentine

机译:黄酮类化合物对脱矿牙本质力学性能的影响

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Objectives This study compared the effect of three flavonoids: proanthocyanidin, naringin and quercetin on the modulus of elasticity (MOE) and ultimate tensile strength (UTS) of demineralised dentine. Methods Thirty teeth were sectioned into 0.5 mm × 1.7 mm × 7 mm beams for MOE measurement. Another 30 non-carious molars were sectioned into 0.5 mm × 0.5 mm thick dentine beams for UTS testing. Demineralised specimens were divided into three groups according to treatments: 6.5% proanthocyanidin, 6.5% quercetin and 6.5% naringin. Specimens were kept in their respective solutions and tested at baseline, 10 min, 30 min, 1 h and 4 h. The MOE of each specimen was determined using a three-point bending test at a crosshead speed of 0.5 mm/min. For UTS evaluation, each specimen was tested in tension until failure using a crosshead speed of 1 mm/min. Means and standard deviation were calculated. Two-way ANOVA and Tukey test were used to evaluate the effect of flavonoid treatment and treatment duration on MOE and UTS. Results Both MOE and UTS were significantly affected by flavonoid treatment (p < 0.001) and treatment duration (p < 0.001). Interaction of the two factors was significant for MOE (p < 0.001), but not for UTS (p > 0.05). Flavonoid treatment improved the mechanical properties of demineralised dentine in the order: proanthocyanidin > quercetin > naringin. It took a longer time for the flavonoids to produce a significant change in UTS, when compared to MOE. Conclusion Proanthocyanidin was more effective than quercetin and naringin in improving biomechanical properties of dentine matrix, thereby enhancing preventive and reparative dental therapies. Clinical Significance Despite its larger molecular size, proanthocyanidin was more effective than quercetin and naringin, in enhancing the biomechanical properties of demineralised dentine.
机译:目的本研究比较了原花青素,柚皮苷和槲皮素这三种类黄酮对脱矿牙本质的弹性模量(MOE)和极限拉伸强度(UTS)的影响。方法将30颗牙齿切成0.5 mm×1.7 mm×7 mm的横梁,以进行MOE测量。将另外30个非龋齿磨牙切成0.5 mm×0.5 mm厚的牙本质束,用于UTS测试。脱矿物质的标本根据处理方法分为三组:6.5%原花青素,6.5%槲皮素和6.5%柚皮苷。将标本保存在各自的溶液中,并在基线,10分钟,30分钟,1小时和4小时进行测试。使用三点弯曲试验以0.5mm / min的十字头速度确定每个样品的MOE。为了进行UTS评估,使用1 mm / min的十字头速度对每个样品进行张力测试直至失效。计算平均值和标准偏差。采用双向方差分析和Tukey检验评估类黄酮的治疗效果和治疗持续时间对MOE和UTS的影响。结果黄酮类药物治疗(p <0.001)和治疗持续时间(p <0.001)对MOE和UTS都有显着影响。这两个因素的相互作用对MOE而言是显着的(p <0.001),而对于UTS则不显着(p> 0.05)。类黄酮处理依次改善了去矿质牙本质的机械性能:原花青素>槲皮素>柚皮苷。与MOE相比,类黄酮在UTS中产生显着变化所花费的时间更长。结论原花青素在改善牙本质基质的生物力学性能方面比槲皮素和柚皮苷更有效,从而增强了预防性和修复性牙齿治疗。临床意义尽管原花青素具有较大的分子大小,但它在增强去矿质牙本质的生物力学性能方面比槲皮素和柚皮苷更有效。

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