Microhardness and characterization of human dental tissue after application of enzymatic chemical agents: In vitro study.

Caio-Luiz Lins-Candeiro, Wender Batista-de-Souza, Murilo Navarro-de-Oliveira, Paulo-César-Freitas Santos-Filho, Luiz-Renato Paranhos
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Abstract

Background: The use of enzymatic chemical agents are papain-based materials used in the selective removal of decayed dentin tissue, assisting in conservative techniques and reducing the chances of accidental pulp exposure.

Material and methods: A research protocol was subjected to and approved by an Ethics Committee. Using a reporting guide for laboratory studies (CRIS). Healthy human teeth comprised the produced dentin discs subjected to polishing and washing in an ultrasonic bath. Next, the discs received material application according to the experimental groups: water-soluble gel for two minutes, 37% phosphoric acid for 15 seconds in dentin and 30 seconds in enamel, Papacárie Duo (PD) for 30 seconds and two minutes, and Brix 3000 (BX) for two minutes and 30 seconds. The measurement of material pH used solutions at concentrations of 0.1 ml and 2.7 ml prepared for each enzymatic agent. Then, a bench pH meter (n=10) and pH indicator strips determined pH values. The discs underwent the Knoop hardness test (n=10). The sample calculation was performed using the GPower software with α = 0.05, effect 0.63 and power of 95%. Descriptive statistical analysis was carried out for pH, one way ANOVA supplemented by Tukey for knoop hardness and Spearman correlation for pH measurement techniques.

Results: The enamel hardness findings indicated that, after material application, ECAs do not statistically differ from water-soluble gel (p<0.05). The dentinal hardness analysis presented a statistical difference in phosphoric acid from the other groups (p<0.05). In the pH test, BX values were lower (4.37 ± 0.01) than PD (4.85 ± 0.06). The groups statistically differed (p<0.05).

Conclusions: ECAs for removing decayed dentin tissue did not significantly alter the hardness of enamel and dentin, removal of the smear layer is time-dependent and presents acidity. Key words:Dental caries, Hardness, Dental materials, Papain.

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使用酶化学制剂后人牙组织的显微硬度和特征:体外研究。
背景:酶化学制剂是一种基于木瓜蛋白酶的材料,用于选择性地去除龋坏的牙本质组织,辅助保守治疗技术,并减少牙髓意外暴露的机会:研究方案已提交伦理委员会并获得批准。使用实验室研究报告指南(CRIS)。健康的人类牙齿构成了制作好的牙本质圆盘,并在超声波浴中进行抛光和清洗。然后,根据实验组对牙片进行材料涂抹:水溶性凝胶两分钟,37%磷酸在牙本质中15秒,在釉质中30秒,Papacárie Duo (PD)30秒和两分钟,Brix 3000 (BX)两分钟和30秒。在测量材料 pH 值时,每种酶制剂的溶液浓度分别为 0.1 毫升和 2.7 毫升。然后,用台式 pH 计(n=10)和 pH 指示条测定 pH 值。圆片进行努氏硬度测试(n=10)。样本计算使用 GPower 软件进行,α = 0.05,效应为 0.63,功率为 95%。对 pH 值进行了描述性统计分析,对硬度进行了单向方差分析并辅以 Tukey,对 pH 值测量技术进行了斯皮尔曼相关分析:结果:珐琅质硬度的研究结果表明,在使用材料后,ECA 与水溶性凝胶(ppp)在统计学上没有差异:用于去除龋坏牙本质组织的 ECAs 不会明显改变珐琅质和牙本质的硬度,涂抹层的去除与时间有关,并呈现酸性。关键词:龋齿 硬度 牙科材料 木瓜蛋白酶
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来源期刊
CiteScore
2.70
自引率
0.00%
发文量
118
期刊介绍: Indexed in PUBMED, PubMed Central® (PMC) since 2012 and SCOPUSJournal of Clinical and Experimental Dentistry is an Open Access (free access on-line) - http://www.medicinaoral.com/odo/indice.htm. The aim of the Journal of Clinical and Experimental Dentistry is: - Periodontology - Community and Preventive Dentistry - Esthetic Dentistry - Biomaterials and Bioengineering in Dentistry - Operative Dentistry and Endodontics - Prosthetic Dentistry - Orthodontics - Oral Medicine and Pathology - Odontostomatology for the disabled or special patients - Oral Surgery
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