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February 8, 2026Photochemical & Photobiological Sciences0 citationsOpen Access

Evaluation of antimicrobial photodynamic therapy with Butyl toluidine blue O for inactivation of Aggregatibacter actinomycetemcomitans biofilm

ATAna Carolina A. C. TortamanoCKClaudio Teruo KassaFMFabiana D. Magalhães

Key Points

  • The study aimed to evaluate the effectiveness of butyl toluidine blue O in inactivating Aggregatibacter actinomycetemcomitans biofilm using antimicrobial photodynamic therapy.
  • Developed butyl toluidine blue O as a photosensitizer with enhanced properties.
  • Applied antimicrobial photodynamic therapy to biofilms grown on bovine dental samples.
  • Utilized a laser of 660 nm wavelength and varied irradiation times (0, 1, 3, or 5 minutes).
  • Counted and analyzed colony-forming units post-treatment using microaerophilic conditions.
  • Examined samples with scanning electron microscopy for structural analysis.
  • The therapy with 5 min irradiation achieved a 99.99% reduction in biofilm microbial load.
  • Statistically significant differences were observed in treated groups compared to control and non-irradiated groups.

Abstract

Abstract As an adjunctive intervention to mechanical periodontal treatment, antimicrobial photodynamic therapy aims to induce the production of reactive oxygen species, thereby reducing microbial infection. Butyl toluidine blue O, a novel photosensitizer from the phenothiazine family, was developed through physicochemical modifications of the structure of toluidine blue, demonstrating decreased aggregation and increased singlet oxygen production and lipophilicity. The objective of this study was to evaluate the effects of butyl toluidine blue O on Aggregatibacter actinomycetemcomitans biofilm. A biofilm was grown on bovine dental samples, followed by the application of antimicrobial photodynamic therapy. The experimental design included the following groups: Control, Light, incubation with PS without irradiation (0), and three aPDT groups (1, 3, or 5 min of irradiation time duration). A laser with a wavelength of 660 nm and 100 mW of radiant power was employed. After the procedures, the samples were cultivated under microaerophilic conditions, counted, and converted into colony-forming units for analysis and comparison. The samples exhibiting statistically significant differences were analyzed through scanning electron microscopy. Antimicrobial photodymanic therapy with 5 min irradiation period achieved a 99.99% reduction in biofilm microbial load. In conclusion, the approach mediated by butyl toluidine blue O demonstrated efficacy against A. actinomycetemcomitans biofilm.

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Cite This Study

Tortamano et al. (2026) studied this question.

synapsesocial.com/papers/6988277b0fc35cd7a8846483https://doi.org/10.1007/s43630-026-00851-x
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