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Hydrophobic and hydrophilic effects on water structuring and adhesion in denture adhesives

机译:腹腔粘附性和亲水性效应牙本质粘合剂中的疏水性和亲水性

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摘要

Denture adhesives are designed to be moisture-sensitive through the inclusion of a blend of polymer salts with varying degrees of water-sensitivity. This enables the adhesive to mix with saliva in vivo and activate its high tack, through the formation of a mucilaginous layer. We report for the first time, the use of differential scanning calorimetry (DSC) to study a series of hydrophobic and hydrophilic polymeric systems in order to correlate water-structuring behavior with adhesion strength. Adhesive bonding of the more hydrophobic variants was higher than that of a commercial-based control and a more hydrophilic polymer system in both lap shear and tensile configurations. Water-binding data suggested that increasing the hydrophobicity of the maleic acid copolymer substituents led to decreased levels of freezing water. In comparison, increasing the hydrophilic nature of the polymer backbone gave higher levels of freezing water within the hydrated samples. The results of this study emphasize the importance of varying the levels of hydrophobic and hydrophilic components within denture adhesive formulations, alongside the types of water present within the adhesive systems. This phenomenon has shown the potential to fine-tune the adhesive properties and failure mode against poly(methyl methacrylate), PMMA, surfaces.
机译:义齿粘合剂设计为通过包含聚合物盐的混合物具有不同程度的水敏感性的湿度敏感。这使得粘合剂能够通过体内与唾液混合并通过形成粘膜层来激活其高粘性。我们首次报告,使用差分扫描量热法(DSC)研究一系列疏水性和亲水性聚合物系统,以便将水结构性行为与粘合强度相关联。更疏水变体的粘合剂粘合高于商业基础对照的粘合剂和搭接剪切和拉伸构型更亲水的聚合物体系。水结合数据表明,增加马来酸共聚物取代基的疏水性导致冷冻水水平降低。相比之下,增加聚合物骨架的亲水性质在水合样品中产生了更高水平的冷冻水。该研究的结果强调了改变义齿粘合剂制剂中疏水性和亲水组分水平的重要性,以及粘合剂系统内存在的水类型。这种现象表明,潜在的潜力可以微调粘合性能和抗聚(甲基丙烯酸甲酯),PMMA,表面的失效模式。

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