Characterization of caries progression on dentin after irradiation with Nd:YAG laser by FTIR spectroscopy and fluorescence imaging

P. Ana, A. Brito, D. Zezell, E. Lins
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Abstract

Considering the use of high intensity lasers for preventing dental caries, this blind in vitro study evaluated the compositional and fluorescence effects promoted by Nd:YAG laser (λ=1064 nm) when applied for prevention of progression of dentin caries, in association or not with topical application of acidulated phosphate fluoride (APF). Sixty bovine root dentin slabs were prepared and demineralized by 32h in order to create early caries lesions. After, the slabs were distributed into six experimental groups: G1- untreated and not submitted to a pH-cycling model; G2- untreated and submitted to a pH-cycling model; G3- acidulated phosphate fluoride application (APF); G4- Nd:YAG irradiation (84.9 J/cm2, 60 mJ/pulse); G5- treated with Nd:YAG+APF; G6- treated with APF+Nd:YAG. After treatments, the samples of groups G2 to G6 were submitted to a 4-day pH-cycling model in order to simulate the progression of early caries lesions. All samples were characterized by the micro-attenuated total reflection technique of Fourier transformed infrared spectroscopy (μATR-FTIR), using a diamond crystal, and by a fluorescence imaging system (FIS), in which it was used an illuminating system at λ= 405±30 nm. Demineralization promoted reduction in carbonate and phosphate contents, exposing the organic matter; as well, it was observed a significant reduction of fluorescence intensity. Nd:YAG laser promoted additional chemical changes, and increased the fluorescence intensity even with the development of caries lesions. It was concluded that the compositional changes promoted by Nd:YAG, when associated to APF, are responsible for the reduction of demineralization progression observed on root dentin.
Nd:YAG激光照射后牙本质龋齿进展的FTIR光谱和荧光成像研究
考虑到使用高强度激光预防龋齿,本体外盲法研究评估了Nd:YAG激光(λ=1064 nm)在预防牙本质龋齿进展时所促进的成分和荧光效应,以及是否与局部应用酸化氟化磷酸(APF)相关。制备60块牛根牙本质板,32h脱矿,形成早期龋病。之后,将石板分为6个实验组:G1-未经处理,未提交ph循环模型;G2-未经处理并提交ph循环模型;G3-酸化磷酸氟应用(APF);G4- Nd:YAG辐照(84.9 J/cm2, 60 mJ/脉冲);G5-用Nd:YAG+APF处理;用APF+Nd:YAG处理G6。治疗结束后,G2 ~ G6组进行4 d ph循环模型,模拟早期龋病的进展情况。采用金刚石晶体的傅里叶变换红外光谱微衰减全反射技术(μATR-FTIR)和波长为λ= 405±30 nm的荧光成像系统(FIS)对样品进行了表征。脱矿作用促使碳酸盐和磷酸盐含量降低,有机质暴露;同时,观察到荧光强度显著降低。Nd:YAG激光促进了额外的化学变化,即使随着龋齿病变的发展,荧光强度也增加。结果表明,Nd:YAG与APF相关,促进了牙根本质脱矿进程的减缓。
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