使用可见光加滤水红外-A(VIS + wIRA)进行抗菌光灭活可改变原位口腔生物膜。

Antimicrobial Photoinactivation Using Visible Light Plus Water-Filtered Infrared-A (VIS + wIRA) Alters In Situ Oral Biofilms.

作者信息

Al-Ahmad A, Bucher M, Anderson A C, Tennert C, Hellwig E, Wittmer A, Vach K, Karygianni L

机构信息

Department of Operative Dentistry and Periodontology, Center for Dental Medicine, Albert-Ludwigs-University, Freiburg, Germany.

Institute of Medical Microbiology and Hygiene, Albert-Ludwigs-University, Freiburg, Germany.

出版信息

PLoS One. 2015 Jul 10;10(7):e0132107. doi: 10.1371/journal.pone.0132107. eCollection 2015.

Abstract

Recently, growing attention has been paid to antimicrobial photodynamic therapy (aPDT) in dentistry. Changing the microbial composition of initial and mature oral biofilm by aPDT using visible light plus water-filtered infrared-A wavelengths (VIS + wIRA) has not yet been investigated. Moreover, most aPDT studies have been conducted on planktonic bacterial cultures. Therefore, in the present clinical study we cultivated initial and mature oral biofilms in six healthy volunteers for 2 hours or 3 days, respectively. The biofilms were treated with aPDT using VIS+wIRA (200 mW cm(-2)), toluidine blue (TB) and chlorine e6 (Ce6) for 5 minutes. Chlorhexidine treated biofilm samples served as positive controls, while untreated biofilms served as negative controls. After aPDT treatment the colony forming units (CFU) of the biofilm samples were quantified, and the surviving bacteria were isolated in pure cultures and identified using MALDI-TOF, biochemical tests and 16S rDNA-sequencing. aPDT killed more than 99.9% of the initial viable bacterial count and 95% of the mature oral biofilm in situ, independent of the photosensitizer. The number of surviving bacterial species was highly reduced to 6 (TB) and 4 (Ce6) in the treated initial oral biofilm compared to the 20 different species of the untreated biofilm. The proportions of surviving bacterial species were also changed after TB- and Ce6-mediated aPDT of the mature oral biofilm, resulting in a shift in the microbial composition of the treated biofilm compared to that of the control biofilm. In conclusion, aPDT using VIS + wIRA showed a remarkable potential to eradicate both initial and mature oral biofilms, and also to markedly alter the remaining biofilm. This encourages the clinical use of aPDT with VIS + wIRA for the treatment of periimplantitis and periodontitis.

摘要

近年来,抗菌光动力疗法(aPDT)在牙科领域受到了越来越多的关注。利用可见光加经水过滤的红外-A波长(VIS + wIRA)通过aPDT改变初始和成熟口腔生物膜的微生物组成尚未得到研究。此外,大多数aPDT研究是在浮游细菌培养物上进行的。因此,在本临床研究中,我们在六名健康志愿者中分别培养初始和成熟口腔生物膜2小时或3天。生物膜用VIS+wIRA(200 mW cm(-2))、甲苯胺蓝(TB)和氯e6(Ce6)进行aPDT处理5分钟。洗必泰处理的生物膜样本作为阳性对照,未处理的生物膜作为阴性对照。aPDT处理后,对生物膜样本的菌落形成单位(CFU)进行定量,将存活细菌分离为纯培养物,并使用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)、生化试验和16S rDNA测序进行鉴定。aPDT在原位杀死了超过99.9%的初始活菌数和95%的成熟口腔生物膜,与光敏剂无关。与未处理生物膜的20种不同菌种相比,处理后的初始口腔生物膜中存活细菌种类数量大幅减少至6种(TB)和4种(Ce6)。在TB和Ce6介导的成熟口腔生物膜aPDT后,存活细菌种类的比例也发生了变化,导致处理后的生物膜与对照生物膜相比微生物组成发生了转变。总之,使用VIS + wIRA的aPDT显示出根除初始和成熟口腔生物膜以及显著改变剩余生物膜的巨大潜力。这鼓励在临床中使用VIS + wIRA的aPDT治疗种植体周围炎和牙周炎。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbe7/4498738/f550845df6f3/pone.0132107.g001.jpg

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