Related Experiment Video
Updated: Jun 21, 2025

LED-Based In Vitro Screening for Assessing Photoactivable Molecules in Bacterial Photodynamic Inactivation
Published on: January 24, 2025
Photodynamic activation of phytochemical-antibiotic combinations for combatting Staphylococcus aureus from acute
Ariana S C Gonçalves1, Miguel M Leitão2, José R Fernandes3
1LEPABE-Laboratory for Process Engineering, Environment, Biotechnology and Energy, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal; ALICE-Associate Laboratory for Innovation in Chemical Engineering, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, s/n, 4200-465 Porto, Portugal; Environmental Health Department, Portuguese National Health Institute Doutor Ricardo Jorge, Porto, Portugal.
Abstract:
Staphylococcus aureus is characterized by its high resistance to conventional antibiotics, particularly methicillin-resistant (MRSA) strains, making it a predominant pathogen in acute and chronic wound infections. The persistence of acute S. aureus wound infections poses a threat by increasing the incidence of their chronicity. This study investigated the potential of photodynamic activation using phytochemical-antibiotic combinations to eliminate S. aureus under conditions representative of acute wound infections, aiming to mitigate the risk of chronicity. The strategy applied takes advantage of the promising antibacterial and photosensitising properties of phytochemicals, and their ability to act as antibiotic adjuvants. The antibacterial activity of selected phytochemicals (berberine, curcumin, farnesol, gallic acid, and quercetin; 6.25-1000 μg/mL) and antibiotics (ciprofloxacin, tetracycline, fusidic acid, oxacillin, gentamicin, mupirocin, methicillin, and tobramycin; 0.0625-1024 μg/mL) was screened individually and in combination against two S. aureus clinical strains (methicillin-resistant and -susceptible-MRSA and MSSA). The photodynamic activity of the phytochemicals was assessed using a light-emitting diode (LED) system with blue (420 nm) or UV-A (365 nm) variants, at 30 mW/cm2 (light doses of 9, 18, 27 J/cm2) and 5.5 mW/cm2 (light doses of 1.5, 3.3 and 5.0 J/cm2), respectively. Notably, all phytochemicals restored antibiotic activity, with 9 and 13 combinations exhibiting potentiating effects on MSSA and MRSA, respectively. Photodynamic activation with blue light (420 nm) resulted in an 8- to 80-fold reduction in the bactericidal concentration of berberine against MSSA and MRSA, while curcumin caused 80-fold reduction for both strains at the light dose of 18 J/cm2. Berberine and curcumin-antibiotic combinations when subjected to photodynamic activation (420 nm light, 10 min, 18 J/cm2) reduced S. aureus culturability by ≈9 log CFU/mL. These combinations lowered the bactericidal concentration of antibiotics, achieving a 2048-fold reduction for gentamicin and 512-fold reduction for tobramycin. Overall, the dual approach involving antimicrobial photodynamic inactivation and selected phytochemical-antibiotic combinations demonstrated a synergistic effect, drastically reducing the culturability of S. aureus and restoring the activity of gentamicin and tobramycin.
Insights
This study explored using phytochemicals with antibiotics to combat antibiotic-resistant Staphylococcus aureus (MRSA) in wound infections. Photodynamic activation significantly enhanced treatment, reducing bacterial levels and restoring antibiotic effectiveness.
Area of Science:
- Microbiology
- Photochemistry
- Pharmacology
Background:
- Staphylococcus aureus, particularly methicillin-resistant strains (MRSA), presents a significant challenge in wound infections due to high antibiotic resistance.
- Persistent acute S. aureus infections can lead to chronicity, increasing treatment complexity and patient risk.
- Conventional antibiotics are often insufficient against resistant S. aureus strains.
Purpose of the Study:
- To investigate the efficacy of combining phytochemicals with antibiotics for eliminating S. aureus in acute wound infection models.
- To assess the potential of photodynamic activation to enhance the antimicrobial activity of these combinations.
- To mitigate the risk of acute S. aureus wound infections progressing to chronic states.
Main Methods:
- Screened antibacterial activity of selected phytochemicals (berberine, curcumin, farnesol, gallic acid, quercetin) and antibiotics against MRSA and MSSA strains.
- Assessed photodynamic activity using blue (420 nm) or UV-A (365 nm) LED light at varying doses.
- Evaluated synergistic effects of phytochemical-antibiotic combinations, both with and without photodynamic activation.
Main Results:
- All tested phytochemicals restored antibiotic activity; 9 and 13 combinations showed potentiating effects on MSSA and MRSA, respectively.
- Photodynamic activation with blue light (420 nm) reduced the bactericidal concentration of berberine and curcumin by 8- to 80-fold.
- Berberine and curcumin combinations with blue light photodynamic activation reduced S. aureus culturability by approximately 9 log CFU/mL and restored activity of gentamicin and tobramycin.
Conclusions:
- Phytochemical-antibiotic combinations demonstrate synergistic effects in combating S. aureus.
- Antimicrobial photodynamic inactivation significantly enhances the bactericidal efficacy of these combinations.
- This dual approach offers a promising strategy to reduce S. aureus burden in wound infections and overcome antibiotic resistance.
More Related Videos
Related Concept Videos
Combined Effects of Drugs: Synergism
Such synergistic combinations...
Hand hygiene
Hand washing...

