Antimicrobial Photodynamic Therapy: Study of Bacterial Recovery Viability and Potential Development of Resistance after Treatment
Антимикробная фотодинамическая терапия: исследование восстановления жизнеспособности бактерий и потенциального развития устойчивости после лечения
2010-01-20
SCID: 54.1/3bu9ddce
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Tri-Py(+)-Me-PFVibrio fischeriantimicrobial photodynamic therapybacterial viability recoveryphotodynamic resistance
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Abstract (AI)
Antimicrobial photodynamic therapy (aPDT) has emerged in the clinical field as a potential alternative to antibiotics to treat microbial infections. No cases of microbial viability recovery or any resistance mechanisms against it are yet known. 5,10,15-tris(1-Methylpyridinium-4-yl)-20-(pentafluorophenyl)-porphyrin triiodide (Tri-Py(+)-Me-PF) was used as photosensitizer. Vibrio fischeri and recombinant Escherichia coli were the studied bacteria. To determine the bacterial recovery after treatment, Tri-Py(+)-Me-PF (5.0 microM) was added to bacterial suspensions and the samples were irradiated with white light (40 W m(-2)) for 270 minutes. Then, the samples were protected from light, aliquots collected at different intervals and the bioluminescence measured. To assess the development of resistance after treatment, bacterial suspensions were exposed to white light (25 minutes), in presence of 5.0 microM of Tri-Py(+)-Me-PF (99.99% of inactivation) and plated. After the first irradiation period, surviving colonies were collected from the plate and resuspended in PBS. Then, an identical protocol was used and repeated ten times for each bacterium. The results suggest that aPDT using Tri-Py(+)-Me-PF represents a promising approach to efficiently destroy bacteria since after a single treatment these microorganisms do not recover their viability and after ten generations of partially photosensitized cells neither of the bacteria develop resistance to the photodynamic process.
Key Findings
1
After a single treatment with 5.0 microM Tri-Py(+)-Me-PF and 270 minutes of white-light irradiation, neither bacterium recovered viability.
2
After ten generations of partially photosensitized cells, neither Vibrio fischeri nor recombinant Escherichia coli developed resistance to the photodynamic process.
3
Antimicrobial photodynamic therapy using Tri-Py(+)-Me-PF efficiently inactivated Vibrio fischeri and recombinant Escherichia coli.
4
Photodynamic treatment achieved 99.99% bacterial inactivation under the resistance-selection protocol.
5
The findings support aPDT with Tri-Py(+)-Me-PF as a promising alternative approach for destroying bacteria without observed viability recovery or resistance development.
Research Object
Vibrio fischeri and recombinant Escherichia coli treated with antimicrobial photodynamic therapy using Tri-Py(+)-Me-PF
Research Subject
Bacterial viability recovery after treatment and development of resistance to repeated antimicrobial photodynamic therapy
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2010-01-20
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