Caries affected Dentin biomodification using Bromelain, Riboflavin photosensitizer via UVA, and Chitosan Nanoparticles on shear bond strength and microleakage scores: A SEM evaluation.

Khold Alahdal, Ahmed Maawadh, Laila AlDeeb, Thamer Almohareb, Ahoud S Alshamrani, Ali Alrahlah
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Abstract

Aims: Assessment of the impact of different dentin bio-modifiers i.e., Bromelain, Riboflavin photosensitizer (RFP/Ultraviolet-A), and Chitosan nanoparticles (CHNPs) on the shear bond strength (SBS) and microleakage of composite bonded to acid etched carious affected dentin (CAD).

Materials and methods: Sixty-four human molars in which carious lesions extend till the middle third of the dentin were included. The infected dentin was removed and CAD was exposed. All specimens were categorized into four groups based on the application of dentin bio-modifier (n=16) Group 1 (No dentin modifier), Group 2 (Bromelain), Group 3 (RFP/UVA), and Group 4 (CHNPs). Dental adhesive application and composite buildup were performed. A dye penetration test was used to assess marginal leakage. Resin CAD interface assessment was performed using SEM. For SBS and failure pattern analysis, a universal testing machine and stereomicroscope were used respectively. One-way ANOVA followed by Bonferroni's posthoc test was employed to analyze the differences among various groups (p ≤ 0.05) RESULTS: The lowest microleakage (13.27 ± 0.10) and highest SBS (11.64 ± 0.16 MPa) were observed in Group 2 (Bromelain). However, the maximum values of marginal leakage (37.21 ± 0.21) and minimum SBS (7.34 ± 0.07 MPa) were detected in Group 1 samples. The length of resin tags in the Group 2 specimens (Bromelain) was found to be the highest (102.11 ± 5.12μm). However, Group 1 (No modifier) exhibited the lowest resin tag length (50.45 ± 2.37 μm).

Conclusion: Caries-affected dentin modified with Bromelain resulted in satisfactory SBS with minimal microleakage scores. Chitosan nanoparticles and RFP/Ultraviolet-A also presented better outcomes in terms of microleakage and SBS than the control.

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使用菠萝蛋白酶、核黄素光敏剂(通过 UVA)和壳聚糖纳米颗粒进行龋齿牙本质生物改性对剪切粘接强度和微渗漏评分的影响:SEM 评估。
目的:评估不同牙本质生物改性剂(即菠萝蛋白酶、核黄素光敏剂(RFP/Ultraviolet-A)和壳聚糖纳米颗粒(CHNPs))对酸蚀龋坏牙本质(CAD)上粘结的复合材料的剪切粘结强度(SBS)和微渗漏的影响:64颗人类磨牙的龋坏延伸至牙本质的中三分之一。移除受感染的牙本质并暴露 CAD。根据牙本质生物改性剂的应用情况,将所有标本分为四组(n=16):第 1 组(无牙本质改性剂)、第 2 组(菠萝蛋白酶)、第 3 组(RFP/UVA)和第 4 组(CHNPs)。进行牙科粘合剂涂抹和复合树脂堆积。使用染料渗透测试评估边缘渗漏。使用 SEM 对树脂 CAD 接口进行评估。在进行 SBS 和失效模式分析时,分别使用了万能试验机和体视显微镜。结果:第 2 组(菠萝蛋白酶)的微渗漏率最低(13.27 ± 0.10),SBS 最高(11.64 ± 0.16 MPa)。然而,第 1 组样品的边际渗漏值最大(37.21 ± 0.21),SBS 最低(7.34 ± 0.07 兆帕)。第 2 组试样(菠萝蛋白酶)的树脂标签长度最大(102.11 ± 5.12μm)。然而,第 1 组(无改性剂)的树脂标签长度最低(50.45 ± 2.37 μm):结论:用菠萝蛋白酶修饰受龋齿影响的牙本质可获得令人满意的 SBS,且微渗漏评分极低。壳聚糖纳米颗粒和 RFP/Ultraviolet-A 在微渗漏和 SBS 方面的效果也优于对照组。
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Photodynamic disruption of a polymicrobial biofilm of two periodontal species using indocyanine green-loaded nanospheres. Bleaching efficacy of in-office bleaching with violet light using low-concentration hydrogen peroxide nanoparticulate photocatalyst gel: a randomized controlled trial. Hiporfin photodynamic therapy for early-stage cervical cancer: A case report. Caries affected Dentin biomodification using Bromelain, Riboflavin photosensitizer via UVA, and Chitosan Nanoparticles on shear bond strength and microleakage scores: A SEM evaluation. VALIDITY ASSESSMENT OF A THIRD-GENERATION LIGHT-INDUCED FLUORESCENCE DEVICE IN DETECTING PROXIMAL AND OCCLUSAL CARIES LESIONS:CORRESPONDENCE.
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