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Dentine Tubule Occlusion by Novel Bioactive Glass-Based Toothpastes

机译:基于新型生物活性玻璃基牙膏的牙本质小管阻塞

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There are numerous over-the-counter (OTC) and professionally applied (in-office) products and techniques currently available for the treatment of dentine hypersensitivity (DH), but more recently, the use of bioactive glasses in toothpaste formulations have been advocated as a possible solution to managing DH. Aim. The aim of the present study, therefore, was to compare several bioactive glass formulations to investigate their effectiveness in an established in vitro model. Materials and Methods. A 45S5 glass was synthesized in the laboratory together with several other glass formulations (1) a mixed glass (fluoride and chloride), (2) BioMinF, (3) a chloride glass, and (4) an amorphous chloride glass. The glass powders were formulated into five different toothpaste formulations. Dentine discs were sectioned from extracted human teeth and prepared for the investigation by removing the cutting debris (smear layer) following sectioning using a 6% citric acid solution for 2 minutes. Each disc was halved to provide test and control halves for comparison following the brushing of the five toothpaste formulations onto the test halves for each toothpaste group. Following the toothpaste application, the test discs were immersed in either artificial saliva or exposed to an acid challenge. Results. The dentine samples were analyzed using scanning electron microscopy (SEM), and observation of the SEM images indicated that there was good surface coverage following artificial saliva immersion. Furthermore, although the acid challenge removed the hydroxyapatite layer on the dentine surface for most of the samples, except for the amorphous chloride glass, there was evidence of tubular occlusion in the dentine tubules. Conclusions. The conclusions from the study would suggest that the inclusion of bioactive glass into a toothpaste formulation may be an effective approach to treat DH.
机译:目前有许多可用于治疗牙本质过敏症(DH)的非处方药(OTC)和专业应用的(办公室)产品和技术,但最近,人们提倡在牙膏配方中使用生物活性玻璃作为一种管理DH的可能解决方案。目标。因此,本研究的目的是比较几种生物活性玻璃配方,以研究其在已建立的体外模型中的有效性。材料和方法。 45S5玻璃是在实验室中与其他几种玻璃配方(1)混合玻璃(氟化物和氯化物),(2)BioMinF,(3)氯化物玻璃和(4)无定形氯化物玻璃一起合成的。将玻璃粉配制成五种不同的牙膏配方。从拔出的人类牙齿上切下牙本质片,准备使用6%的柠檬酸溶液切片2分钟后去除切屑(涂抹层)以进行研究。在将五种牙膏配方刷到每个牙膏组的测试半部上之后,将每个牙盘切成两半以提供比较的测试和对照半部。施用牙膏后,将测试盘浸入人工唾液中或暴露于酸刺激下。结果。使用扫描电子显微镜(SEM)分析牙本质样品,并观察SEM图像表明人工唾液浸泡后具有良好的表面覆盖率。此外,尽管酸攻击去除了除无定形氯化物玻璃以外的大多数样品在牙本质表面上的羟基磷灰石层,但有证据表明牙本质小管中存在管状阻塞。结论。该研究的结论表明,在牙膏配方中加入生物活性玻璃可能是治疗DH的有效方法。

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