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首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >The potential of commercially available phytotherapeutic compounds as new photosensitizers for dental antimicrobial PDT: A photochemical and photobiological in vitro study
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The potential of commercially available phytotherapeutic compounds as new photosensitizers for dental antimicrobial PDT: A photochemical and photobiological in vitro study

机译:市售的植物治疗化合物作为牙科抗菌PDT的新型光敏剂的潜力:光化学和光生物学体外研究

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The present study evaluated the effectiveness of extracts of commercially available Curcuma Ionga, Citrus lemon, Hamamelis virginiana and Hypericum perforatum as photosensitizers in Antimicrobial Photodynamic Therapy (aPDT). Each photosensitizer (PS) was analyzed in a spectrophotometer between 350 and 750 nm to determine the ideal light source. Once the absorption bands were determined, three light sources were selected. To determine the concentration of use, the compounds were tested at different concentrations on bovine dentin samples to evaluate the risk of staining. Once the concentration was determined, the PSs were evaluated for dark toxicity and phototoxicity on fibroblast and bacteria culture. Each compound was then irradiated with each light source and evaluated for the production of reactive oxygen species (ROS). The bacterial reduction was tested on E. faecalis culture in planktonic form and on biofilm using an energy of 10 J and an Energy Density of 26 J/cm(2). The tested compounds exhibited light absorption in three bands of the visible spectrum: violet (405 nm), blue (460 nm) and red (660 nm). At a 1:6 concentration, none of the compounds caused tooth staining as they did not exhibit significant toxicity in the cells or bacterial suspension. Additionally, significant ROS production was observed when the compounds were irradiated at each wavelength. When aPDT was performed on the plactonic and biofilm bacteria, significant microbial reduction was observed in both cases, reaching a reduction of up to 5Logs. In conclusion, extracts of Curcuma longa, Citrus lemon, Hamamelis virginiana and Hypericum perforatum exhibited potential for use as photosensitizing agents in aPDT.
机译:本研究评估了市售的姜黄,柠檬柑桔,金缕梅和贯叶连翘提取物作为抗菌光动力疗法(aPDT)中的光敏剂的有效性。在分光光度计中在350至750 nm之间分析每种光敏剂(PS),以确定理想的光源。一旦确定了吸收带,就选择了三个光源。为了确定使用浓度,在牛牙本质样品上测试了不同浓度的化合物,以评估染色的风险。一旦确定浓度,就评估PS对成纤维细胞和细菌培养的暗毒性和光毒性。然后用每种光源照射每种化合物,并评估其活性氧(ROS)的产生。使用浮力形式的粪肠球菌培养物和生物膜上使用10 J的能量和26 J / cm(2)的能量密度测试了细菌的减少。所测试的化合物在可见光谱的三个波段中显示出光吸收:紫色(405 nm),蓝色(460 nm)和红色(660 nm)。在1:6的浓度下,没有一种化合物引起牙齿变色,因为它们在细胞或细菌悬浮液中没有表现出明显的毒性。另外,当在每个波长下照射化合物时,观察到明显的ROS产生。当对内生细菌和生物膜细菌进行aPDT时,在两种情况下均观察到微生物的显着减少,最多可减少5Logs。总之,姜黄,柠檬柑桔,金缕梅和贯叶连翘的提取物具有用作aPDT中光敏剂的潜力。

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