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首页> 外文期刊>Journal of dentistry >Bioadhesion and retention of non-aqueous delivery systems in a dental hard tissue model.
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Bioadhesion and retention of non-aqueous delivery systems in a dental hard tissue model.

机译:牙科硬组织模型中非水传递系统的生物粘附和保留。

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摘要

OBJECTIVES: Effective delivery of active agents to dental hard tissues is critical to product performance and pertinent to biofilm control, caries, erosion, hypersensitivity and tooth bleaching. The aim of this study was to investigate in vitro the bioadhesion and retention behaviour of non-aqueous delivery systems (NADS) based on glycerol, PEG 400, Carbopol 974P and triclosan. METHODS: Tensile testing was employed to calculate the work of adhesion (WOA) and maximum force of detachment (F(max)) for formulations applied to hydroxyapatite (HA) and pellicle-coated HA surfaces (HAP). Formulation substantivity under conditions of dynamic flow was studied by monitoring the release of incorporated triclosan. The release data were fitted to a first-order model to generate a removal half-life (t(1/2)). RESULTS: Tensile testing showed a clear positive relationship between Carbopol concentration and bioadhesion. Increasing the PEG 400 concentration in formulations containing glycerol, 2% (w/w) Carbopol and 0.30% triclosan produced a local minimum for both WOA and F(max) at 10% (w/w). Values for WOA and F(max) decreased threefold in the presence of a salivary pellicle. Good correlations were obtained between (i) WOA and F(max) and (ii) WOA and t(1/2) and (iii) the elastic modulus of the formulations and t(1/2). CONCLUSION: The presence of a salivary pellicle markedly reduced the bioadhesive interaction between the NADS and the substrate. Increased Carbopol content appeared to be the dominant factor in promoting the WOA, elasticity and retention of NADS to HA surfaces. Such formulations might provide a suitable platform for developing systems suitable for promoting retention to hard surfaces within the oral cavity.
机译:目的:有效地将活性剂输送至牙齿硬组织对于产品性能至关重要,并且与生物膜控制,龋齿,糜烂,超敏反应和牙齿漂白有关。这项研究的目的是在体外研究基于甘油,PEG 400,Carbopol 974P和三氯生的非水传递系统(NADS)的生物粘附和保留行为。方法:采用拉伸测试来计算应用于羟基磷灰石(HA)和薄膜涂层的HA表面(HAP)的配方的粘附力(WOA)和最大脱离力(F(max))。通过监测掺入的三氯生的释放,研究了在动态流动条件下的制剂直接性。将释放数据拟合到一阶模型以生成去除半衰期(t(1/2))。结果:拉伸试验表明,Carbopol浓度与生物粘附力之间存在明显的正相关关系。在含有甘油,2%(w / w)Carbopol和0.30%三氯生的配方中增加PEG 400的浓度会使WOA和F(max)都达到10%(w / w)的局部最小值。在唾液薄膜的情况下,WOA和F(max)的值降低了三倍。在(i)WOA和F(max)与(ii)WOA与t(1/2)和(iii)制剂的弹性模量与t(1/2)之间获得了良好的相关性。结论:唾液薄膜的存在显着降低了NADS与基底之间的生物粘附相互作用。 Carbopol含量的增加似乎是促进WOA,NADS弹性和将HADS保留在HA表面的主要因素。这样的制剂可以为开发适合于促进在口腔内的硬表面上保留的系统提供合适的平台。

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