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首页> 外文期刊>Photomedicine and laser surgery >Antimicrobial photodynamic action on dentin using a light-emitting diode light source.
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Antimicrobial photodynamic action on dentin using a light-emitting diode light source.

机译:使用发光二极管光源对牙本质的抗菌光动力作用。

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OBJECTIVE: The aim of this study was the evaluation of two different photosensitizers activated by red light emitted by light-emitting diodes (LEDs) in the decontamination of carious bovine dentin. MATERIALS AND METHODS: Fifteen bovine incisors were used to obtain dentin samples which were immersed in brain-heart infusion culture medium supplemented with 1% glucose, 2% sucrose, and 1% young primary culture of Lactobacillus acidophilus 10(8) CFU/mL and Streptococcus mutans 10(8) CFU/mL for caries induction. Three different concentrations of the Photogem solution, a hematoporphyrin derivative (1, 2, and 3 mg/mL) and two different concentrations of toluidine blue O (TBO), a basic dye (0.025 and 0.1 mg/mL) were used. To activate the photosensitizers two different light exposure times were used: 60 sec and 120 sec, corresponding respectively to the doses of 24 J/cm(2) and 48 J/cm(2). RESULTS: After counting the numbers of CFU per milligram of carious dentin, we observed that the use of LED energy in association with Photogem or TBO was effective for bacterial reduction in carious dentin, and that the greatest effect on S. mutans and L. acidophilus was obtained with TBO at 0.1 mg/mL and a dose of 48 J/cm(2). It was also observed that the overall toxicity of TBO was higher than that of Photogem, and that the phototoxicity of TBO was higher than that of Photogem. CONCLUSION: Based on our data we propose a mathematical model for the photodynamic effect when different photosensitizer concentrations and light doses are used.
机译:目的:本研究的目的是评估两种不同的光敏剂,这些光敏剂在龋齿牛牙本质的去污中被发光二极管(LED)发出的红光激活。材料与方法:使用十五个牛切牙来获得牙本质样品,将其浸入补充有1%葡萄糖,2%蔗糖和1%嗜酸乳杆菌10(8)CFU / mL和变形链球菌10(8)CFU / mL用于龋齿诱导。使用了三种不同浓度的Photogem溶液,血卟啉衍生物(1、2和3 mg / mL)和两种不同浓度的甲苯胺蓝O(TBO),碱性染料(0.025和0.1 mg / mL)。为了激活光敏剂,使用了两种不同的曝光时间:60秒和120秒,分别对应于24 J / cm(2)和48 J / cm(2)的剂量。结果:在计算每毫克龋牙本质的CFU数量后,我们观察到将LED能量与Photogem或TBO结合使用可有效减少龋齿牙本质中的细菌,并且对变形链球菌和嗜酸乳杆菌的影响最大。用0.1 mg / mL的TBO和48 J / cm(2)的剂量可获得Tb。还观察到,TBO的总体毒性高于Photogem,并且TBO的光毒性高于Photogem。结论:基于我们的数据,当使用不同的光敏剂浓度和光剂量时,我们提出了光动力学效应的数学模型。

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