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可见光加滤水红外A和四氢卟啉四甲苯磺酸盐(THPTS)对原位口腔生物膜的抗菌光灭活作用

Antimicrobial Photoinactivation of In Situ Oral Biofilms by Visible Light Plus Water-Filtered Infrared A and Tetrahydroporphyrin-tetratosylate (THPTS).

作者信息

Karygianni Lamprini, Ruf Sandra, Hellwig Elmar, Follo Marie, Vach Kirstin, Al-Ahmad Ali

机构信息

Clinic of Conservative and Preventive Dentistry, Center of Dental Medicine University of Zurich, CH-8032 Zürich, Switzerland.

Department of Operative Dentistry and Periodontology, Medical Center, University of Freiburg, 79106 Freiburg, Germany.

出版信息

Microorganisms. 2021 Jan 11;9(1):145. doi: 10.3390/microorganisms9010145.

Abstract

The aim of this study was to examine the effect of aPDT with visual light (VIS) + water-filtered infrared A (wIRA) as a light source, and tetrahydroporphyrin-tetratosylate (THPTS) as a photosensitizer on in situ initial and mature oral biofilms. The samples were incubated, ex situ, with THPTS for two minutes, followed by irradiation with 200 mW cm - 2 VIS + wIRA for five minutes at 37 °C. The adherent microorganisms were quantified, and the biofilm samples were visualized using live/dead staining and confocal laser scanning microscopy (CLSM). The THPTS-mediated aPDT resulted in significant decreases in both the initially adherent microorganisms and the microorganisms in the mature oral biofilms, in comparison to the untreated control samples (>99.99% each; = 0.018 and = 0.0066, respectively). The remaining vital bacteria significantly decreased in the aPDT-treated biofilms during initial adhesion (vitality rate 9.4% vs. 71.2% untreated control, 17.28% CHX). Of the mature biofilms, 25.67% remained vital after aPDT treatment (81.97% untreated control, 16.44% CHX). High permeability of THPTS into deep layers could be shown. The present results indicate that the microbial reduction in oral initial and mature oral biofilms resulting from aPDT with VIS + wIRA in combination with THPTS has significant potential for the treatment of oral biofilm-associated diseases.

摘要

本研究的目的是考察以可见光(VIS)+水过滤红外A(wIRA)作为光源、四氢卟啉四甲苯磺酸盐(THPTS)作为光敏剂的光动力疗法(aPDT)对原位初始和成熟口腔生物膜的影响。将样品在体外与THPTS孵育两分钟,然后在37℃下用200 mW/cm²的VIS + wIRA照射五分钟。对附着的微生物进行定量,并使用活/死染色和共聚焦激光扫描显微镜(CLSM)对生物膜样品进行可视化观察。与未处理的对照样品相比,THPTS介导的aPDT使初始附着的微生物和成熟口腔生物膜中的微生物均显著减少(各减少>99.99%;P分别为0.018和0.0066)。在初始黏附过程中,aPDT处理的生物膜中剩余的活菌显著减少(活力率为9.4%,未处理对照为71.2%,洗必泰为17.28%)。在成熟生物膜中,aPDT处理后25.67%的生物膜仍有活力(未处理对照为81.97%,洗必泰为16.44%)。可以证明THPTS具有高渗透性,可深入深层。目前的结果表明,VIS + wIRA联合THPTS的aPDT对口腔初始和成熟生物膜中的微生物减少具有显著潜力,可用于治疗口腔生物膜相关疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ecb/7827502/ca713d30a767/microorganisms-09-00145-g001.jpg

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