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在水性溶液和过氧化氢溶液中使用吲哚菁绿对可吸收胶原膜上的细菌生物膜进行光动力灭活。

Photodynamic inactivation of bacterial biofilms on absorbable collagen membranes using indocyanine green in aqueous and hydrogen peroxide solutions.

作者信息

Mohammad Zaman Hesam, Safaraei Yashar, Chiniforush Nasim, Afrasiabi Shima

机构信息

General dentist, Private office, Tehran, Iran.

Dentofacial Deformities Research Center, Research Institute for Dental Sciences, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

出版信息

Lasers Med Sci. 2025 Sep 10;40(1):354. doi: 10.1007/s10103-025-04605-6.

Abstract

Microbial contamination of absorbable collagen membranes used in guided bone regeneration (GBR) may compromise healing outcomes. This study aimed to investigate whether the minimum inhibitory concentration (MIC) of hydrogen peroxide (HO) can improve the antibacterial effect of indocyanine green (ICG)-mediated antimicrobial photodynamic therapy (PDT) on absorbable collagen membranes while reducing the need for high HO concentrations. A laboratory-based model was developed using Streptococcus sanguinis and Staphylococcus aureus. The biofilms were treated with ICG (1.29 mM), HO (at MIC), or their combination, followed by irradiation at 808 nm (12 J cm²) or no irradiation. The biofilm viability was assessed after treatment. PDT (ICG + 808 nm diode laser) showed a significant reduction of bacteria, which was further enhanced by the addition of HO at MIC concentrations. Although ICG-HO-PDT showed similar efficacy to 1 M HO, this effect was dependent on light activation. Without irradiation, no comparable result was observed, emphasizing that photoactivation is essential for achieving synergistic effects with HO at low concentration. This combination could effectively combat biofilms on collagen membranes and provide an alternative for infection control by reducing the dependence on high HO concentrations.

摘要

引导骨再生(GBR)中使用的可吸收胶原膜的微生物污染可能会影响愈合效果。本研究旨在探讨过氧化氢(HO)的最低抑菌浓度(MIC)是否能提高吲哚菁绿(ICG)介导的抗菌光动力疗法(PDT)对可吸收胶原膜的抗菌效果,同时减少对高浓度HO的需求。利用血链球菌和金黄色葡萄球菌建立了一个基于实验室的模型。生物膜分别用ICG(1.29 mM)、HO(MIC浓度)或它们的组合处理,然后在808 nm(12 J/cm²)下照射或不照射。处理后评估生物膜活力。PDT(ICG + 808 nm二极管激光)显示细菌显著减少,在MIC浓度下添加HO可进一步增强这种效果。虽然ICG-HO-PDT显示出与1 M HO相似的疗效,但这种效果依赖于光激活。不进行照射时,未观察到类似结果,强调光激活对于在低浓度下与HO实现协同效应至关重要。这种组合可以有效对抗胶原膜上的生物膜,并通过减少对高浓度HO的依赖为感染控制提供一种替代方法。

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