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使用负载吲哚菁绿的纳米球对两种牙周菌种的多微生物生物膜进行光动力破坏。

Photodynamic disruption of a polymicrobial biofilm of two periodontal species using indocyanine green-loaded nanospheres.

作者信息

Ono Kota, Hayashi Jun-Ichiro, Suzuki Yuiko, Yamashita Mika, Nishikawa Kiyoshi, Higuchi Naoya, Goto Ryoma, Ohno Tasuku, Nishida Eisaku, Yamamoto Genta, Kikuchi Takeshi, Hasegawa Yoshiaki, Mitani Akio

机构信息

Department of Periodontology, School of Dentistry, Aichi Gakuin University, 2-11 Suemori-Dori, Chikusa-ku, Nagoya, Aichi 464-8651, Japan.

Department of Microbiology, School of Dentistry, Aichi Gakuin University, 1-100 Kusumoto-Cho, Chikusa-ku, Nagoya, Aichi 464-8650, Japan.

出版信息

Photodiagnosis Photodyn Ther. 2024 Dec;50:104421. doi: 10.1016/j.pdpdt.2024.104421. Epub 2024 Nov 23.

Abstract

OBJECTIVE

Antimicrobial photodynamic therapy (aPDT) is considered a potential treatment for biofilm infections, which have become an increasing health issue because of the rise in antimicrobial resistance. This study aimed to evaluate the bactericidal effect of aPDT using indocyanine green-loaded nanospheres with chitosan coating (ICG-Nano/c) against polymicrobial periodontal biofilms.

METHODS

Composite biofilms of Porphyromonas gingivalis and Streptococcus gordonii were constructed in 96-well plates, and aPDT with ICG-Nano/c and an 810 nm diode laser was performed either by direct irradiation or transmitting irradiation through a 3-mm-thick gingival model. The efficacy of ICG-Nano/c-based aPDT was compared with antibiotics (minocycline and amoxicillin). Additionally, attenuated aPDT under sublethal conditions was used to investigate gene expression related to the antioxidant response (oxyR and sod of P. gingivalis) and biofilm formation via quorum sensing (luxS of both species) with real-time polymerase chain reaction.

RESULTS

ICG-Nano/c-based aPDT significantly reduced the bacterial load in the biofilm, achieving at least a 2 log reduction in colony-forming units within 5 min for both irradiation methods. After 6 h of treatment, the bactericidal effects of aPDT and antibiotics were similar, but after 32 h, antibiotics were more effective, particularly against P. gingivalis. Attenuated aPDT showed a slight increase in sod expression in P. gingivalis, while luxS expression decreased in both bacteria.

CONCLUSION

The ICG-Nano/c-based aPDT system exerted a certain degree of bactericidal activity against a composite biofilm of periodontal bacteria. Therefore, it has potential as an alternative option or adjunctive therapy to conventional antibiotics in periodontal treatment.

摘要

目的

抗菌光动力疗法(aPDT)被认为是治疗生物膜感染的一种潜在方法,由于抗菌药物耐药性的增加,生物膜感染已成为一个日益严重的健康问题。本研究旨在评估使用壳聚糖包被的负载吲哚菁绿的纳米球(ICG-Nano/c)的aPDT对多微生物牙周生物膜的杀菌效果。

方法

在96孔板中构建牙龈卟啉单胞菌和戈登链球菌的复合生物膜,使用ICG-Nano/c和810 nm二极管激光通过直接照射或透过3 mm厚的牙龈模型进行透射照射来实施aPDT。将基于ICG-Nano/c的aPDT的疗效与抗生素(米诺环素和阿莫西林)进行比较。此外,在亚致死条件下使用减弱的aPDT,通过实时聚合酶链反应研究与抗氧化反应相关的基因表达(牙龈卟啉单胞菌的oxyR和sod)以及通过群体感应的生物膜形成(两种菌的luxS)。

结果

基于ICG-Nano/c的aPDT显著降低了生物膜中的细菌载量,两种照射方法在5分钟内均使菌落形成单位至少减少2个对数级。治疗6小时后,aPDT和抗生素的杀菌效果相似,但32小时后,抗生素更有效,尤其是对牙龈卟啉单胞菌。减弱的aPDT使牙龈卟啉单胞菌的sod表达略有增加,而两种细菌的luxS表达均降低。

结论

基于ICG-Nano/c的aPDT系统对牙周细菌的复合生物膜具有一定程度的杀菌活性。因此,它有潜力作为牙周治疗中传统抗生素的替代选择或辅助治疗方法。

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