龋洞和裂隙封闭剂在使用不同蛋白水解剂的脱蛋白珐琅质上的粘附性能:体外研究

IF 2.5 Q2 DENTISTRY, ORAL SURGERY & MEDICINE Dentistry Journal Pub Date : 2024-07-04 DOI:10.3390/dj12070206
Luis Francisco García-Mota, M. Fernández-Barrera, Rene Garcia-Contreras, Guillermo Grazioli, J. E. Zamarripa-Calderón, José Alejandro Rivera-Gonzaga, C. Cuevás-Suarez
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引用次数: 0

摘要

这项工作的目的是评估不同蛋白水解剂对坑槽封闭剂与牛珐琅质粘接强度的影响。根据所使用的凹坑和裂隙封闭剂(HelioSeal F 或 Dyad Flow),将 84 个牛珐琅质样本随机分组。然后,根据所使用的蛋白水解剂对标本进行细分(n = 7):第 1 组,蒸馏水(对照组);第 2 组,10 wt.% Tergazyme®;第 3 组,10 wt.% ZYME®;第 4 组,10%木瓜蛋白酶凝胶;第 5 组,10%菠萝蛋白酶凝胶;第 6 组,5.25 wt.% 次氯酸钠。蛋白水解液的细胞活力通过 MTT 试验进行评估。在进行酸蚀程序之前,先将蛋白水解剂涂在釉质表面,然后涂上凹坑和裂隙封闭剂。在 37 °C的水中保存 24 小时或 6 个月后,对微剪切粘接强度进行评估。为每个实验组拍摄了具有代表性的扫描电镜图像。粘接强度数据通过三方方差分析进行统计分析,显著性水平为 α = 0.05。菠萝蛋白酶和木瓜蛋白酶蛋白水解液对人牙髓细胞没有任何细胞毒性作用。经过 24 小时和 6 个月的老化后,对于凹坑和裂隙封闭剂而言,次氯酸钠、木瓜蛋白酶、菠萝蛋白酶和 Tergazyme® 的粘接强度值在统计学上明显更高(p < 0.05)。无论使用哪种去蛋白剂,Dyad Flow 在老化 6 个月后都能产生更好的粘接强度。次氯酸钠、木瓜蛋白酶和菠萝蛋白酶的蚀刻模式为 1 型。Tergazyme®、木瓜蛋白酶和菠萝蛋白酶在酸蚀前对珐琅质表面进行脱蛋白处理方面表现出了功效,从而提高了凹坑和裂隙封闭剂的粘结强度。在临床上,这表明这些蛋白水解剂可被视为传统方法的可行替代品,以提高密封剂的保持力和使用寿命。在牙科实践中使用这些制剂有可能减少封闭剂的失效。
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Adhesive Performance of Pit and Fissure Sealants on Deproteinized Enamel with Different Proteolytic Agents: In Vitro Study
The objective of this work was to assess the efficacy of different proteolytic agents on the bond strength of pit and fissure sealants to bovine enamel. Eighty-four bovine enamel specimens were randomly assigned in groups according to the pit and fissure sealant applied (HelioSeal F or Dyad Flow). Then, the specimens were subdivided according to the proteolytic agent used (n = 7): Group 1, distilled water (control); Group 2, 10 wt.% Tergazyme®; Group 3, 10 wt.% ZYME®; Group 4, 10% papain gel; Group 5, 10% bromelain gel; and Group 6, 5.25 wt.% sodium hypochlorite. The cell viability of the proteolytic solutions was assessed through the MTT assay. The proteolytic agents were applied on the enamel surface prior to the acid-etching procedure; then, the pit and fissure sealants were placed. The micro-shear bond strength was evaluated after 24 h or 6 months of water storing at 37 °C. Representative SEM images were taken for each experimental group. The bond strength data were statistically analyzed by a three-way ANOVA test using a significance level of α = 0.05. Bromelain and papain proteolytic solutions did not exert any cytotoxic effect on the human dental pulp cells. After 24 h and 6 months of aging, for both pit and fissure sealants, sodium hypochlorite, papain, bromelain, and Tergazyme® achieved statistically significant higher bond strength values (p < 0.05). Irrespective of the deproteinizing agent used, Dyad Flow resulted in a better bond strength after 6 months of aging. The type 1 etching pattern was identified for sodium hypochlorite, papain, and bromelain. Tergazyme®, papain, and bromelain demonstrated efficacy in deproteinizing enamel surfaces prior to acid etching, leading to the improved bond strength of pit and fissure sealants. Clinically, this suggests that these proteolytic agents can be considered viable alternatives to traditional methods for enhancing sealant retention and longevity. Utilizing these agents in dental practice could potentially reduce sealant failures.
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来源期刊
Dentistry Journal
Dentistry Journal Dentistry-Dentistry (all)
CiteScore
3.70
自引率
7.70%
发文量
213
审稿时长
11 weeks
期刊最新文献
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