The Physical Properties of Vanillin-Incorporated Irreversible Hydrocolloid Impression Material

Sirada Leelapong, Sirilak Mateekusontan, Supissara Makkrajang, Pornkiat Churnjittapirom, S. Thaweboon
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Abstract

Irreversible hydrocolloid impression material is extensively used in dentistry to record and duplicate the details of tooth structure, surrounding tissue, and other intraoral structures. The materials allow dentists to work more easily and perform better diagnosis and treatment planning. When used, the material is exposed to oral microorganisms, some are pathogens, from the patient’s teeth, mucosa, blood, and saliva. These pathogens can be absorbed into the material and transmitted to dentists and other dental workers. Hydrocolloid impression material incorporated with vanillin has been shown to exhibit antimicrobial potential, however, its physical properties have not been performed. Therefore, this study aims to investigate the physical properties of a vanillin-incorporated irreversible hydrocolloid impression material on four different physical properties: working time, setting time, elastic recovery, and strain-in compression. The impression powder was mixed with varying concentrations of vanillin (0.1%, 0.5%, and 1.0% w/w) using the electric vacuum mixer. The impression material without vanillin was used as a control. All the tests were done following the ISO specification 21563: 2021 for dental materials with 15 specimens for each test. The result showed that at concentrations of 0%, 0.1%, and 0.5% w/w vanillin, no significant change in the four physical properties has been observed. However, the working time and setting time values of impression material with 1% vanillin were reduced significantly and did not meet the ISO standard. In conclusion, the incorporation of 0.1%, 0.5%, and 1% w/w vanillin into irreversible hydrocolloid impression material showed a significant reduction in setting time and working time. However, when considering the ISO standard specifications, the 0.1% and 0.5% w/w vanillin-added materials can still be used due to their acceptable values of all physical properties (setting time, working time, elastic recovery, and strain-in compression). These impression materials will be valuable for use in clinical settings to reduce the disinfection procedure and the risk of cross-contamination.
掺入香兰素的不可逆水胶体印模材料的物理特性
不可逆水胶体印模材料广泛应用于牙科,用于记录和复制牙齿结构、周围组织和其他口腔内结构的细节。这种材料能让牙医更轻松地工作,更好地进行诊断和治疗规划。使用时,材料会接触到患者牙齿、粘膜、血液和唾液中的口腔微生物,其中有些是病原体。这些病原体会被材料吸收,并传染给牙医和其他牙科工作者。含有香兰素的水胶体印模材料已被证明具有抗菌潜力,但其物理性质尚未进行研究。因此,本研究旨在研究掺入香兰素的不可逆水胶体印模材料的四种不同物理性质:工作时间、凝固时间、弹性恢复和应变压缩。使用电动真空混合器将印模粉末与不同浓度的香兰素(0.1%、0.5% 和 1.0% w/w)混合。不含香兰素的印模材料作为对照。所有测试均按照 ISO 21563:2021 牙科材料规范进行,每次测试使用 15 个试样。结果表明,当香兰素的浓度为 0%、0.1% 和 0.5%(重量百分比)时,四种物理性质均无明显变化。不过,香兰素含量为 1%的印模材料的工作时间和凝固时间值明显缩短,不符合 ISO 标准。总之,在不可逆水胶体印模材料中添加 0.1%、0.5% 和 1%(重量百分比)的香兰素会显著缩短凝固时间和工作时间。不过,考虑到 ISO 标准的规格,添加了 0.1% 和 0.5% w/w 香草素的材料仍然可以使用,因为它们的所有物理性能(凝固时间、工作时间、弹性恢复和压缩应变)都达到了可接受的值。这些印模材料可用于临床,以减少消毒程序和交叉感染的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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