Tan Melissa H X, Hill Robert G, Anderson Paul
Centre for Oral Growth and Development, Barts and The London School of Medicine and Dentistry, Unit of Dental Physical Sciences, Queen Mary University of London, Mile End Road, London E1 4NS, UK.
Int J Dent. 2015;2015:521901. doi: 10.1155/2015/521901. Epub 2015 Nov 30.
Air abrasion as a caries removal technique is less aggressive than conventional techniques and is compatible for use with adhesive restorative materials. Alumina, while being currently the most common abrasive used for cutting, has controversial health and safety issues and no remineralisation properties. The alternative, a bioactive glass, 45S5, has the advantage of promoting hard tissue remineralisation. However, 45S5 is slow as a cutting abrasive and lacks fluoride in its formulation. The aim of this study was to compare the cutting efficacy of dentine using a customised fluoride-containing bioactive glass Na0SR (38-80 μm) versus the conventional alumina abrasive (29 μm) in an air abrasion set-up. Fluoride was incorporated into Na0SR to enhance its remineralisation properties while strontium was included to increase its radiopacity. Powder outflow rate was recorded prior to the cutting tests. Principal air abrasion cutting tests were carried out on pristine ivory dentine. The abrasion depths were quantified and compared using X-ray microtomography. Na0SR was found to create deeper cavities than alumina (p < 0.05) despite its lower powder outflow rate and predictably reduced hardness. The sharper edges of the Na0SR glass particles might improve the cutting efficiency. In conclusion, Na0SR was more efficacious than alumina for air abrasion cutting of dentine.
作为一种龋齿去除技术,空气喷砂法比传统技术的侵入性小,并且适用于与粘结性修复材料一起使用。氧化铝虽然是目前用于切割的最常见磨料,但存在有争议的健康和安全问题,且没有再矿化特性。另一种选择,即生物活性玻璃45S5,具有促进硬组织再矿化的优点。然而,45S5作为切割磨料的速度较慢,并且其配方中缺乏氟化物。本研究的目的是在空气喷砂装置中比较定制的含氟生物活性玻璃Na0SR(38 - 80μm)与传统氧化铝磨料(29μm)对牙本质的切割效果。将氟化物掺入Na0SR以增强其再矿化特性,同时加入锶以增加其射线不透性。在切割试验之前记录粉末流出率。在原始象牙质牙本质上进行主要的空气喷砂切割试验。使用X射线显微断层扫描对磨损深度进行量化和比较。尽管Na0SR的粉末流出率较低且硬度可预测地降低,但发现其比氧化铝产生更深的洞。Na0SR玻璃颗粒更尖锐的边缘可能提高了切割效率。总之,在空气喷砂切割牙本质方面,Na0SR比氧化铝更有效。