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Bactericidal effect of visible light in the presence of erythrosine on Porphyromonas gingivalis and Fusobacterium nucleatum compared with diode laser an in vitro study

机译:与二极管激光器相比在赤藓红存在下可见光对牙龈卟啉单胞菌和核梭菌的杀菌作用

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>Objectives: Recently, photodynamic therapy (PDT) has been introduced as a new modality in oral bacterial decontamination. Besides, the ability of laser irradiation in the presence of photosensitizing agent to lethal effect on oral bacteria is well documented. Current research aims to evaluate the effect of photodynamic killing of visible blue light in the presence of plaque disclosing agent erythrosine as photosensitizer on Porphyromonas gingivalis associated with periodontal bone loss and Fusobacterium nucleatum associated with soft tissue inflammation, comparing with the near-infrared diode laser.>Materials and methods: Standard suspension of P. gingivalis and F. nucleatum were exposed to Light Emitting Diode (LED) (440–480 nm) used to photopolymerize composite resine dental restoration in combination with erythrosine (22 µm) up to 5 minutes. Bacterial sample were also exposed to a near-infrared diode laser (wavelength, 830 nm), using identical irradiation parameters for comparison. Bacterial samples from each treatment groups (radiation-only group, erythrosine-only group and light or laser with erythrosine group) were subcultured onto the surface of agar plates. Survival of these bacteria was determined by counting the number of colony forming units (CFU) after incubation.>Results: Exposure to visible blue light and diode laser in conjugation with erythrosine significantly reduced both species examined viability, whereas erythrosine-treated samples exposed to visible light suggested a statically meaningful differences comparing to diode laser. In addition, bactericidal effect of visible light or diode laser alone on P. gingivalis as black-pigmented bacteria possess endogenous porphyrins was noticeably.>Conclusion: Our result suggested that visible blue light source in the presence of plaque disclosing agent erythrosine could can be consider as potential approach of PDT to kill the main gram-negative periodontal pathogens. From a clinical standpoint, this regimen could be established as an additional minimally invasive antibacterial treatment of plaque induced periodontal pathologies.
机译:>目标:最近,光动力疗法(PDT)被引入口腔细菌净化的一种新形式。此外,在光敏剂存在下激光辐照对口腔细菌的致死作用的能力已被充分证明。当前的研究目的是与近红外二极管激光器相比,评估在有斑块显露剂赤藓红作为光敏剂存在下光动力杀死可见蓝光对与牙周骨丢失有关的牙龈卟啉单胞菌和与软组织炎症有关的核梭状芽胞杆菌的光敏剂的作用。 >材料和方法:将牙龈假单胞菌和核仁假单胞菌的标准悬浮液暴露于发光二极管(LED)(440-480 nm)中,该发光二极管用于与光红氨酸(22 µm)组合进行光聚合复合树脂牙科修复体)最多5分钟。细菌样品也暴露于近红外二极管激光器(波长830 nm),使用相同的辐照参数进行比较。将每个处理组(仅放射组,仅赤藓红组和带有赤藓红组的光或激光)的细菌样品传代培养在琼脂平板表面上。通过计数孵育后菌落形成单位(CFU)的数量来确定这些细菌的存活率。>结果:暴露于可见蓝光和二极管激光与赤藓红结合显着降低了两种细菌的​​生存能力,而赤藓红与二极管激光器相比,暴露在可见光下的经处理样品显示出静态上有意义的差异。此外,可见光或二极管激光单独对牙龈卟啉单胞菌的杀菌作用是明显的,因为黑色色素细菌具有内源性卟啉。>结论:我们的结果表明存在斑块的可见蓝光光源药物赤藓红可以被认为是PDT杀死主要革兰氏阴性牙周病原体的潜在方法。从临床的角度来看,该方案可被确立为斑块诱发的牙周病的另一种微创抗菌治疗。

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