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两种光传输系统用于弯曲根管内白色念珠菌生物膜光动力消毒的实时评估

Real-time evaluation of two light delivery systems for photodynamic disinfection of Candida albicans biofilm in curved root canals.

作者信息

Sabino C P, Garcez A S, Núñez S C, Ribeiro M S, Hamblin M R

机构信息

Center for Lasers and Applications, IPEN-CNEN/SP, São Paulo, SP, Brazil.

出版信息

Lasers Med Sci. 2015 Aug;30(6):1657-65. doi: 10.1007/s10103-014-1629-x. Epub 2014 Jul 25.

Abstract

Antimicrobial photodynamic therapy (APDT) combined with endodontic treatment has been recognized as an alternative approach to complement conventional root canal disinfection methods on bacterial biofilms. We developed an in  vitro model of bioluminescent Candida albicans biofilm inside curved dental root canals and investigated the microbial reduction produced when different light delivery methods are employed. Each light delivery method was evaluated in respect to the light distribution provided inside curved root canals. After conventional endodontic preparation, teeth were sterilized before canals were contaminated by a bioluminescent strain of C. albicans (CEC789). Methylene blue (90 μM) was introduced into the canals and then irradiated (λ = 660 nm, P = 100 mW, beam diameter = 2 mm) with laser tip either in contact with pulp chamber or within the canal using an optical diffuser fiber. Light distribution was evaluated by CCD camera, and microbial reduction was monitored through bioluminescence imaging. Our findings demonstrated that the bioluminescent C. albicans biofilm model had good reproducibility and uniformity. Light distribution in dental tissue was markedly dependent on the light delivery system, and this strategy was directly related to microbial destruction. Both light delivery systems performed significant fungal inactivation. However, when irradiation was performed with optical diffuser fiber, microbial burden reduction was nearly 100 times more effective. Bioluminescence is an interesting real-time analysis to endodontic C. albicans biofilm inactivation. APDT showed to be an effective way to inactivate C. albicans biofilms. Diffuser fibers provided optimized light distribution inside curved root canals and significantly increased APDT efficiency.

摘要

抗菌光动力疗法(APDT)与牙髓治疗相结合已被公认为是一种补充传统根管消毒方法以处理细菌生物膜的替代方法。我们建立了一个弯曲牙根管内白色念珠菌生物发光生物膜的体外模型,并研究了采用不同光传递方法时产生的微生物减少情况。针对弯曲根管内提供的光分布对每种光传递方法进行了评估。在进行传统牙髓预备后,在根管被白色念珠菌的生物发光菌株(CEC789)污染之前对牙齿进行消毒。将亚甲蓝(90 μM)引入根管,然后使用激光头与牙髓腔接触或通过光扩散光纤在根管内进行照射(λ = 660 nm,P = 100 mW,光束直径 = 2 mm)。通过CCD相机评估光分布,并通过生物发光成像监测微生物减少情况。我们的研究结果表明,白色念珠菌生物发光生物膜模型具有良好的可重复性和均匀性。牙齿组织中的光分布明显取决于光传递系统,并且这种策略与微生物破坏直接相关。两种光传递系统均能显著使真菌失活。然而,当使用光扩散光纤进行照射时,微生物负荷减少效果提高了近100倍。生物发光是一种用于牙髓白色念珠菌生物膜失活的有趣实时分析方法。APDT被证明是使白色念珠菌生物膜失活的有效方法。扩散光纤在弯曲根管内提供了优化的光分布,并显著提高了APDT效率。

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