首页> 外文期刊>Journal of dentistry >Interfacial degradation of adhesive composite restorations mediated by oral biofilms and mechanical challenge in an extracted tooth model of secondary caries
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Interfacial degradation of adhesive composite restorations mediated by oral biofilms and mechanical challenge in an extracted tooth model of secondary caries

机译:中龋上介质牙龈介导的粘合复合修复件的界面降解

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Graphical abstract Display Omitted Abstract Objective To study the combined effect of simulated occlusal loading and plaque-derived biofilm on the interfacial integrity of dental composite restorations, and to explore whether the effects are modulated by the incorporation of sucrose. Methods MOD-class-II restorations were prepared in third molars. Half of the specimens (n=27) were subjected to 200,000 cycles of mechanical loading using an artificial oral environment (ART). Then, both groups of specimens (fatigued and non-fatigued) were divided into three subgroups for testing in CDC-reactors under the following conditions: no biofilm (Control), biofilm with no sucrose (BNS) and biofilm pulsed with sucrose (BWS). BNS and BWS reactors were incubated with a multispecies inoculum from a single plaque donor whereas the control reactor was not. The BWS reactor was pulsed with sucrose five times a day. The biofilm challenges were repeated sequentially for 12 weeks. pH was recorded for each run. Specimens were examined for demineralization with micro-CT and load capacity by fast fracture test. Results Demineralization next to the restorations was only detectable in BWS teeth. Fracture loads were significantly reduced by the concomitant presence of biofilm and sucrose, regardless of whether cyclic mechanical loading was applied. Cyclic loading reduced fracture loads under all reactor conditions, but the reduction was not statistically significant. Conclusions Sucrose pulsing was required to induce biofilm-mediated degradation of the adhesive interface. We have presented a comprehensive and clinically relevant model to study the effects of mechanical loading and microbial challenge on the interfacial integrity of dental restorations.
机译:图形摘要显示省略摘要目的研究模拟咬合载荷和斑块衍生的生物膜对牙科复合修复界面完整性的综合作用,并探讨蔗糖掺入的效果。方法采用第三磨牙制备MOD-II类修复体。使用人工口腔环境(ART)对标本(n = 27)的一半进行200,000个机械载荷循环。然后,将两组标本(疲劳和不疲劳)分为三个用于在下列条件下在CDC反应器中进行测试的亚组:没有生物膜(对照),生物膜,没有蔗糖(BNS)和用蔗糖脉冲的生物膜(BWS) 。将BNS和BWS反应器与来自单个牙菌供体的多数接种物一起孵育,而对照反应器不是。 BWS反应器每天用蔗糖脉冲。生物膜挑战依次重复12周。每次运行记录pH值。通过快速断裂试验检查用微型CT和负载能力进行脱矿质的标本。结果在修复后旁边的脱矿质仅在BWS牙齿中可检测到。无论是否施加循环机械载荷,伴随的生物膜和蔗糖的存在显着降低了骨折载荷。循环加载在所有反应器条件下减少骨折载荷,但还原在统计学上没有统计学意义。结论需要蔗糖脉冲来诱导生物膜介导的粘合剂界面的降解。我们介绍了一个全面而临床相关的模型,以研究机械载荷和微生物挑战对牙科修复物的界面完整性的影响。

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