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Self-cleaning and antibiofouling enamel surface by slippery liquid-infused technique.

机译:通过光滑的液体注入技术进行自清洁和抗污染的牙釉质表面。

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摘要

We aimed to create a slippery liquid-infused enamel surface with antibiofouling property to prevent dental biofilm/plaque formation. First, a micro/nanoporous enamel surface was obtained by 37% phosphoric acid etching. The surface was then functionalized by hydrophobic low-surface energy heptadecafluoro-1,1,2,2-tetra- hydrodecyltrichlorosilane. Subsequent infusion of fluorocarbon lubricants (Fluorinert FC-70) into the polyfluoroalkyl-silanized rough surface resulted in an enamel surface with slippery liquid-infused porous surface (SLIPS). The results of water contact angle measurement, diffuse-reflectance Fourier transform infrared spectroscopy, and atomic force microscope confirmed that the SLIPS was successfully constructed on the enamel surface. The antibiofouling property of the SLIPS was evaluated by the adsorption of salivary protein of mucin and Streptococcus mutans in vitro, as well as dental biofilm formation using a rabbit model in vivo. The results showed that the SLIPS on the enamel surface significantly inhibited mucin adhesion and S. mutans biofilm formation in vitro, and inhibited dental plaque formation in vivo.
机译:我们的目标是创造一种具有抗生物污垢特性的光滑液体灌注搪瓷表面,以防止牙齿生物膜/斑块形成。首先,通过37%的磷酸蚀刻获得微/纳米孔搪瓷表面。然后通过疏水性低表面能七氟-1,1,2,2-四氢癸基三氯硅烷对表面进行功能化。随后将碳氟化合物润滑剂(Fluorinert FC-70)注入聚氟烷基硅烷化的粗糙表面中,从而导致搪瓷表面具有光滑的注入液体的多孔表面(SLIPS)。水接触角测量,漫反射傅里叶变换红外光谱和原子力显微镜的结果证实,SLIPS成功地在搪瓷表面上构建。通过在体外吸附粘蛋白和变形链球菌的唾液蛋白以及在体内使用兔模型形成牙齿生物膜来评估SLIPS的抗生物污垢特性。结果表明,釉质表面上的SLIPS在体外显着抑制粘蛋白粘附和变形链球菌生物膜形成,并且在体内抑制牙菌斑形成。

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