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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Enhanced penetration of fluoride particles into bovine enamel by combining dielectrophoresis with AC electroosmosis
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Enhanced penetration of fluoride particles into bovine enamel by combining dielectrophoresis with AC electroosmosis

机译:通过将介电电泳与AC电渗结合,将氟化物颗粒的渗透增强到牛牙釉质中

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Fluoride deposition into the pores of enamel is necessary at high concentrations to reduce enamel demineralization and with a high degree of penetration to account for loss by ingestion. Current diffusion and electrochemical methods are inadequate for effectively transporting fluoride greater than 20 μm into enamel. The study explores the coupling of dielectrophoresis (DEP) and AC electroosmosis (ACEO) to selectively concentrate fluoride particles from fluoride gel excipients and enhance their penetration into enamel. By measuring the frequency response of approximately 10-μm-sized sodium fluoride particles in an aqueous gel media, appropriate frequencies for positive DEP, negative DEP, and ACEO are identified. An assembly composed of two cross-planar interdigitated electrode (IDE) arrays with open slots is driven successively by fields at appropriate frequencies to drive fluoride particles through the slots of the IDE and into the enamel pores using a combination of DEP and ACEO methods. Fluoride uptake and penetration of 1.23% acidulated phosphate fluoride gel into bovine tooth enamel at various depths is measured using wavelength dispersive spectrometry to compare deposition by diffusion, DEP, and DEP plus ACEO. Fluoride levels in all DEP groups were significantly higher than diffusion groups at depths 10 and 20 μm. The highest fluoride concentrations at 10, 20, 50, and 100 μm depths occur under deposition conditions combining DEP with ACEO. Fluoride levels at 50 μm were equivalent to long-term prophylactic exposure. These methods may potentially benefit populations at high risk for development of caries and periodontal disease, including underserved children and disparate groups.
机译:在高浓度下需要氟化物沉积到牙釉质的孔中,以减少搪瓷脱矿质,并且具有高度的渗透,以通过摄取来损失。电流扩散和电化学方法不充分,以有效地将氟化物大于20μm进入珐琅。该研究探讨了介电泳(DEP)和AC电渗(ACEO)的偶联,选择性地将氟化物颗粒与氟化物凝胶赋形剂浓缩,并增强它们的渗透到牙釉质中。通过测量凝胶水溶液中大约10μm尺寸的氟化钠颗粒的频率响应,鉴定了正面,负面DEP和Aceo的适当频率。由两个跨平面的跨平面的跨越电极(IDE)阵列组成的组件通过适当的频率的场依次驱动,以通过DEP和ACEO方法的组合通过IDE的槽驱动氟化物颗粒并进入搪瓷孔中。使用波长分散光谱测量以各种深度测量1.23%酸化磷酸氟凝胶的氟化物吸收和渗透到牛牙釉质中,以通过扩散,DEP和DEP加上的沉积比较沉积。所有DEP基团中的氟化物水平明显高于深度10和20μm的扩散基团。在与Aceo结合的沉积条件下发生10,20,50和100μm深度的最高氟化物浓度。 50μm的氟化物水平相当于长期预防性暴露。这些方法可能潜在损害龋齿和牙周病的高风险的群体,包括服务不足的儿童和不同的群体。

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