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电动力学流促进氢过氧化物纳米流进入釉质以增强牙齿美白。

Enhanced teeth whitening by nanofluidic transport of hydrogen peroxide into enamel with electrokinetic flows.

机构信息

Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA, USA.

Department of Restorative Dentistry and Biomaterials Sciences, Harvard School of Dental Medicine, Boston, MA, USA.

出版信息

Dent Mater. 2019 Nov;35(11):1637-1643. doi: 10.1016/j.dental.2019.08.118. Epub 2019 Sep 20.

Abstract

UNLABELLED

Tooth whitening, a routine procedure in dentistry, is one of the examples of medical procedures that are limited by the challenge of delivering molecules into various types of nanoporous tissues. Current bleaching methods rely on simple diffusion of peroxides into enamel nano channels, therefore requires sufficient contact time with peroxides. In-office treatments often involve enamel etching or light activation which often results in patient sensitivity and potential soft tissue damage.

OBJECTIVE

To demonstrate a robust method to transport hydrogen peroxide to greater depths into enamel nanopores through nanofluidic flows driven by electrokinetics, with the intention to increase efficacy while reducing treatment time.

METHODS

Freshly extracted human teeth were subjected to electrokinetic flow treatment with hydrogen peroxide under different electric fields with varying operation times. Pre- and post-operative shade matching was done using a photospectrometer.

RESULTS

It is demonstrated that the operation time for the same concentration of hydrogen peroxide can be shortened by 10 times. The proposed method showed significant improvements in whitening effects over control groups and thus offers promising clinically-viable chairside applications with efficacy.

SIGNIFICANCE

The demonstrated nanofluidic transport of hydrogen peroxide into enamel has a potential to be applied for enhancing tooth whitening, compared to simple diffusion, without heating the hard dental tissues.

摘要

未加标签:牙齿美白是牙科中的常规程序,它是分子输送到各种类型纳米多孔组织所面临的挑战限制的医学程序的一个例子。目前的美白方法依赖于过氧化物简单扩散到牙釉质纳米通道中,因此需要与过氧化物有足够的接触时间。诊室治疗通常涉及牙釉质蚀刻或光激活,这往往会导致患者敏感和潜在的软组织损伤。

目的:通过电泳驱动的纳米流体流动,展示一种将过氧化氢输送到牙釉质纳米孔更深层的强大方法,以提高功效,同时缩短治疗时间。

方法:将新鲜拔出的人类牙齿用不同电场的过氧化氢进行电泳处理,操作时间不同。使用分光光度计进行术前和术后的比色匹配。

结果:结果表明,相同浓度的过氧化氢的操作时间可以缩短 10 倍。与对照组相比,所提出的方法在美白效果上有显著改善,因此在临床上具有潜在的可行的椅旁应用,具有疗效。

意义:与简单扩散相比,将过氧化氢经纳米流体输送到牙釉质中具有增强牙齿美白的潜力,而不会加热坚硬的牙组织。

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