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一种用于可视化和定量分析生物膜形成和牙本质脱矿的双能微 CT 方法。

A dual energy micro-CT methodology for visualization and quantification of biofilm formation and dentin demineralization.

机构信息

Department of Pediatric Dentistry and Orthodontics, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

Laboratory for Nuclear Instrumentation, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

出版信息

Arch Oral Biol. 2018 Jan;85:10-15. doi: 10.1016/j.archoralbio.2017.09.034. Epub 2017 Oct 7.

Abstract

OBJECTIVE

The aim of this study was to induce artificial caries in human sound dentin by means of a microcosm model using human saliva as source of bacteria and to apply a novel dual-energy micro-CT technique to quantify biofilm formation and evaluate its demineralization potential.

DESIGN

Eight sound third molars had the occlusal enamel removed by cutting with a diamond disk and five cylindrical cavities (±2mm diameter; ±1.5mm depth) were prepared over the dentin surface in each specimen (n=40 cavities). After sterilization, each specimen received the bacterial salivary inoculum obtained from individuals without any systemic diseases presenting dentin caries lesions and were incubated in BHI added of with 5% sucrose for 96h to allow biofilm formation. After that, two consecutive micro-CT scans were acquired from each specimen (40kv and 70kv). Reconstruction of the images was performed using standardized parameters. After alignment, registration, filtering and image calculations, a final stack of images containing the biofilm volume was obtained from each prepared cavity. Dentin demineralization degree was quantified by comparison with sound dentin areas. All data were analyzed using Shapiro-Wilk test and Spearman correlation using α=5%.

RESULTS

Dual-energy micro-CT technique disclosed biofilm formation in all cavities. Biofilm volume inside each cavity varied from 0.30 to 1.57mm. A positive correlation between cavity volume and volume of formed biofilm was obtained (0.77, p<0.01). The mineral decrease obtained in dentin was high (±90%) for all cavities and all demineralized areas showed mineral density values lower than a defined threshold for dentin caries (1.2g/cm).

CONCLUSION

Dual-energy micro-CT technique was successful in the quantification of a microcosm human bacterial biofilm formation and to quantify its demineralization potential in vitro.

摘要

目的

本研究旨在通过使用人类唾液作为细菌来源的微宇宙模型,在人牙本质上人工诱导龋齿,并应用新型双能微 CT 技术定量评估生物膜形成及其脱矿潜力。

设计

八颗完整的第三磨牙通过金刚石切割片去除咬合面牙釉质,在每个样本的牙本质表面制备五个圆柱形窝洞(±2mm 直径;±1.5mm 深度)(n=40 个窝洞)。经过消毒后,每个样本均接受来自无全身疾病且具有牙本质龋损个体的细菌唾液接种物,并在 BHI 中加入 5%蔗糖孵育 96 小时以允许生物膜形成。之后,对每个样本进行两次连续的微 CT 扫描(40kv 和 70kv)。使用标准化参数对图像进行重建。在对齐、注册、滤波和图像计算后,从每个制备好的窝洞获得包含生物膜体积的最终图像堆栈。通过与正常牙本质区域比较来定量牙本质脱矿程度。使用 Shapiro-Wilk 检验和 Spearman 相关分析对所有数据进行分析,α=5%。

结果

双能微 CT 技术揭示了所有窝洞内的生物膜形成。每个窝洞内的生物膜体积从 0.30 到 1.57mm 不等。获得了窝洞体积与形成的生物膜体积之间的正相关关系(0.77,p<0.01)。所有窝洞的牙本质脱矿量均较高(±90%),所有脱矿区域的矿物质密度值均低于牙本质龋的定义阈值(1.2g/cm)。

结论

双能微 CT 技术成功定量评估了微宇宙中人类细菌生物膜的形成及其体外脱矿潜力。

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