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首页> 外文期刊>Journal of dentistry >Efficacy of the stannous ion and a biopolymer in toothpastes on enamel erosion/abrasion
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Efficacy of the stannous ion and a biopolymer in toothpastes on enamel erosion/abrasion

机译:牙膏中亚锡离子和生物聚合物对牙釉质侵蚀/磨损的功效

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Objectives: Sn 2+ has promising erosion-inhibiting properties in solutions, but little is known about respective effects in toothpastes. In addition, biopolymers might have protecting potential. Aim of this study was to investigate the effects of Sn 2+ in toothpastes and of a biopolymer (chitosan) added to a Sn 2+ formulation on erosion/abrasion. Methods: Enamel samples were subjected to cyclic erosion procedures (10 days; 0.50% citric acid, pH 2.5; 6× 2 min/day), and brushing (2× 15 s/day, load 200 g) during immersion in slurries (2 min). The toothpastes were NaF formulations (NaF/1, NaF/2, NaF/3) and Sn 2+ formulations (NaF/SnCl 2, AmF/SnF 2, AmF/NaF/SnCl 2) and AmF/NaF/SnCl 2 + 0.5% chitosan. Declared concentrations of active ingredients in toothpastes were 1400-1450 μg/g F - and 3280-3500 μg/g Sn 2+. Negative controls were erosion only and placebo, positive control was a SnF 2 gel. Tissue loss was quantified profilometrically, Sn on enamel surfaces was measured by energy dispersive X-ray spectroscopy. Results: Loss values (μm) for erosion only and placebo were 14.4 ± 4.5 and 20.2 ± 3.8, respectively, and 4.6 ± 1.9 for the positive control (p ≤ 0.001 each compared to erosion only). The other loss values were: NaF/1 16.5 ± 3.0, NaF/2 14.0 ± 2.7, NaF/3 12.6 ± 3.9, NaF/SnCl 2 14.7 ± 5.1, AmF/SnF 2 13.5 ± 4.8, AmF/NaF/SnCl 2 12.4 ± 4.2, AmF/NaF/SnCl 2 + chitosan 6.6 ± 3.5 (except NaF/1 all p ≤ 0.01 compared to placebo). AmF/NaF/SnCl 2/chitosan was more effective than all other toothpastes (p ≤ 0.01 each). Sn on the enamel surface ranged between 1.3 ± 0.3 and 2.8 ± 0.04 wt.% with no obvious relationship with efficacy. Conclusions: The NaF and Sn 2+ toothpastes without chitosan exhibited similar anti-erosion and abrasion-prevention effects. The experimental Sn 2+ formulation with chitosan revealed promising results similar to those of the positive control. Clinical significance: NaF toothpastes offer a degree of protection against erosion/abrasion, which is likely sufficient for most subjects with average acid exposures. For patients with initial erosive lesions, however, more effective toothpaste is desirable. The combination of Sn 2+ and a biopolymer appears promising in this context.
机译:目标:Sn 2+在溶液中具有有希望的缓蚀性能,但对牙膏中的各种作用知之甚少。另外,生物聚合物可能具有保护潜力。这项研究的目的是研究牙膏中的Sn 2+和添加到Sn 2+配方中的生物聚合物(壳聚糖)对侵蚀/磨损的影响。方法:对搪瓷样品进行循环腐蚀程序(10天; 0.50%柠檬酸,pH 2.5; 6×2分钟/天),并在浸入浆料中(2×15 s /天,负载200 g)进行刷涂分钟)。牙膏是NaF配方(NaF / 1,NaF / 2,NaF / 3)和Sn 2+配方(NaF / SnCl 2,AmF / SnF 2,AmF / NaF / SnCl 2)和AmF / NaF / SnCl 2 + 0.5 %壳聚糖。牙膏中的活性成分声明浓度为1400-1450μg/ g F-和3280-3500μg/ g Sn 2+。阴性对照仅是糜烂,而安慰剂则是SnF 2凝胶。通过轮廓测定法定量组织损失,通过能量色散X射线光谱法测量牙釉质表面上的Sn。结果:仅腐蚀和安慰剂的损失值(μm)分别为14.4±4.5和20.2±3.8,阳性对照的损失值为(4.6±1.9)(与仅腐蚀相比,p≤0.001)。其他损失值为:NaF / 1 16.5±3.0,NaF / 2 14.0±2.7,NaF / 3 12.6±3.9,NaF / SnCl 2 14.7±5.1,AmF / SnF 2 13.5±4.8,AmF / NaF / SnCl 2 12.4 ±4.2,AmF / NaF / SnCl 2 +壳聚糖6.6±3.5(与安慰剂相比,NaF / 1的所有p≤0.01)。 AmF / NaF / SnCl 2 /壳聚糖比所有其他牙膏更有效(每种p≤0.01)。搪瓷表面的锡含量在1.3±0.3至2.8±0.04 wt。%之间,与功效无明显关系。结论:不含壳聚糖的NaF和Sn 2+牙膏具有相似的抗腐蚀和防磨损作用。具有壳聚糖的实验性Sn 2+制剂显示出与阳性对照相似的有希望的结果。临床意义:NaF牙膏可提供一定程度的抗腐蚀/抗磨损保护,这对于大多数平均酸暴露量的受试者而言可能已经足够。然而,对于具有初期糜烂性病变的患者,更有效的牙膏是理想的。在这种情况下,Sn 2+和生物聚合物的组合似乎很有希望。

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