Antimicrobial photodynamic therapy for inactivation of biofilms formed by oral key pathogens

Антимикробная фотодинамическая терапия для инактивации биоплёнок, образованных ключевыми патогенами полости рта
Fabian Cieplik, Laura Tabenski, Wolfgang Buchalla, Tim Maisch
2014-08-12

antibiotic-resistant pathogensantimicrobial photodynamic therapyoral biofilmsphotosensitizersreactive oxygen species
With increasing numbers of antibiotic-resistant pathogens all over the world there is a pressing need for strategies that are capable of inactivating biofilm-state pathogens with less potential of developing resistances in pathogens. Antimicrobial strategies of that kind are especially needed in dentistry in order to avoid the usage of antibiotics for treatment of periodontal, endodontic or mucosal topical infections caused by bacterial or yeast biofilms. One possible option could be the antimicrobial photodynamic therapy (aPDT), whereby the lethal effect of aPDT is based on the principle that visible light activates a photosensitizer (PS), leading to the formation of reactive oxygen species, e.g., singlet oxygen, which induce phototoxicity immediately during illumination. Many compounds have been described as potential PS for aPDT against bacterial and yeast biofilms so far, but conflicting results have been reported. Therefore, the aim of the present review is to outline the actual state of the art regarding the potential of aPDT for inactivation of biofilms formed in vitro with a main focus on those formed by oral key pathogens and structured regarding the distinct types of PS.
1
Antimicrobial photodynamic therapy is presented as a potential alternative to antibiotics for inactivating oral bacterial and yeast biofilms.
2
Published findings on photosensitizers for bacterial and yeast biofilm inactivation are conflicting, indicating that aPDT efficacy is not yet consistent.
3
The approach is motivated by the need for dental antimicrobial strategies with lower potential for promoting resistance than conventional antibiotic treatment.
4
The review evaluates the current evidence for aPDT against in vitro biofilms formed by key oral pathogens, organized according to photosensitizer type.
5
aPDT combines visible light with a photosensitizer to generate reactive oxygen species, such as singlet oxygen, causing immediate phototoxicity during illumination.

in vitro biofilms formed by oral key bacterial and yeast pathogens

the potential of antimicrobial photodynamic therapy, using different photosensitizers, to inactivate these biofilms

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2014-08-12
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Authors
Fabian Cieplik
Laura Tabenski
Wolfgang Buchalla
Tim Maisch
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