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Comparison of different modes of photo-activated disinfection against Porphyromonas gingivalis: An in vitro study

机译:对卟啉硅氧烷的不同模式的比较Porphyromonas Gingivalis:体外研究

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Background: Porphyromonas gingivalis (P. gingivalis), a Gram-negative periodontal pathogen, is frequently detected in subgingival plaques in patients with chronic periodontitis. Considering the insufficient results achieved by the current antimicrobial approaches, this study aimed to compare the susceptibility of P. gingivalis to the different modes of photo-activated disinfection in planktonic culture.Methods: Cultures of P. gingivalis were assigned into three main groups of photothermal disinfection with 810 nm laser in continuous mode + EmunDo (R) (indocyanine green based photosensitizer), 808 nm laser in pulse mode + Perio green (R) (indocyanine green based photosensitizer); and antibacterial photodynamic therapy with 662 nm laser + Radachlorin (R) photosensitizer. Then, the bacterial viability was determined by serial dilution method by counting the number of colonies forming units. The results were analyzed by one-way analysis of variance and Tukey test (p 0.05).Results: All three groups showed significant reduction in the viability of P. gingivalis (p 0.001). However; this reduction was significantly higher in photothermal therapy with EmunDo (R).Conclusions: Both methods of photodynamic and photothermal therapy were successful in Significant eradication of P. gingivalis. Although, photothermal approach was more efficient with EmunDo (R) in combination with 810 nm laser irradiation.
机译:背景:Porphyromonas Gingivalis(P.Gingivalis),克肾阴性牙周病原体经常在慢性牙周炎患者的龈下斑块中检测到。考虑到目前抗微生物方法所取得的成果不足,本研究旨在将P.Gingivivis对浮游生物培养中的光活化消毒模式的敏感性进行比较。方法:P. Gingivalis的培养物分为三个主要的光热组用810nm激光在连续模式+ emundo(r)(吲哚菁绿色的光敏剂)中消毒,808nm激光脉冲模式+ perio green(r)(吲哚菁绿基光敏剂);抗菌光动力治疗662nm激光+ radachlorin(R)光敏剂。然后,通过计算形成单元的菌落数来通过连续稀释方法测定细菌活力。通过单向分析和Tukey检验的单向分析分析结果(P <0.05)。结果:所有三组在P.Gingivalis的可行性显着降低(P <0.001)。然而;通过Emundo(R)的光热疗疗法在光热疗法中显着较高:光动力学和光热疗方法的两种方法在显着消除P. Gingivalis中取得了成功。尽管,光热方法与Emundo(R)更有效,但与810nm激光照射组合。

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