Department of Biophotonics, Universidade Nove de Julho (UNINOVE), São Paulo, Brazil; School of Dentistry, Universidade Nove de Julho (UNINOVE), São Paulo, Brazil.
Center for Lasers and Applications - IPEN-CNEN/SP, São Paulo, Brazil.
Photodiagnosis Photodyn Ther. 2019 Sep;27:132-136. doi: 10.1016/j.pdpdt.2019.05.035. Epub 2019 May 29.
Antimicrobial photodynamic therapy (aPDT) has been investigated as an adjunctive to periodontal treatment but the dosimetry parameters adopted have discrepancies and represent a challenge to measure efficacy. There is a need to understand the clinical parameters required to obtain antimicrobial effects by using aPDT in periodontal pockets. The aim of this study was to investigate parameters relating to the antimicrobial effects of photodynamic therapy in periodontal pockets.
This randomized controlled clinical trial included 30 patients with chronic periodontitis. Three incisors from each patient were selected and randomized for the experimental procedures. Microbiological evaluations were performed to quantify microorganisms before and after treatments and spectroscopy was used to identify methylene blue in the pocket. A laser source with emission of radiation at wavelength of ʎ = 660 nm and output radiant power of 100 mW was used for 1, 3 and 5 min. One hundred μM methylene blue was used in aqueous solution and on surfactant vehicle.
The results demonstrated the absence of any antimicrobial effect with aqueous methylene blue-mediated PDT. On the other hand, methylene blue in the surfactant vehicle produced microbial reduction in the group irradiated for 5 min (p < 0.05). Spectroscopy showed that surfactant vehicle decreased the dimer peak signal at 610 nm.
Within the parameters used in this study, PDT mediated by methylene blue in a surfactant vehicle reached significant microbial reduction levels with 5 min of irradiation. The clinical use of PDT may be limited by factors that reduce the antimicrobial effect. Forms of irradiation and stability of the photosensitizers play an important role in clinical aPDT.
抗菌光动力疗法(aPDT)已被研究作为牙周治疗的辅助手段,但所采用的剂量学参数存在差异,难以衡量疗效。需要了解在牙周袋中使用 aPDT 获得抗菌效果所需的临床参数。本研究旨在探讨与牙周袋中光动力疗法抗菌效果相关的参数。
这是一项随机对照临床试验,纳入了 30 名慢性牙周炎患者。每位患者的三颗切牙被随机选择并进行实验程序。在治疗前后进行微生物学评估以量化微生物,并使用光谱法鉴定口袋中的亚甲蓝。使用波长为 ʎ=660nm、输出辐射功率为 100mW 的激光源进行 1、3 和 5 分钟的照射。在水溶液和表面活性剂载体中使用 100μM 亚甲蓝。
结果表明,水溶液介导的 PDT 没有任何抗菌作用。另一方面,在表面活性剂载体中,亚甲蓝在照射 5 分钟的组中产生了微生物减少(p<0.05)。光谱学显示,表面活性剂载体降低了 610nm 处的二聚体峰信号。
在本研究中使用的参数范围内,表面活性剂载体介导的亚甲蓝 PDT 在 5 分钟照射下达到了显著的微生物减少水平。PDT 的临床应用可能会受到降低抗菌效果的因素的限制。辐照形式和光敏剂的稳定性在临床 aPDT 中起着重要作用。