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May 7, 2026Current Drug Delivery0 citations

Photodynamic Versus Sonodynamic Therapy In Vitro: AntimicrobialActivity of Liposomal Rose Bengal

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OMOmar Molina-AlejandreNVNorma Angélica Villanueva-MartínezMNMaría Guadalupe Nava-Arzaluz

Key Points

  • The aim was to compare the antimicrobial effectiveness of Photodynamic Therapy and Sonodynamic Therapy using Rose Bengal in treating skin infections.
  • Formulations were prepared using soy lecithin and characterized for size, zeta potential, and stability.
  • In vitro release tests and permeation analysis were performed.
  • Antimicrobial activity was tested against MRSA and Pseudomonas aeruginosa, along with cytotoxicity tests on HaCaT keratinocytes.
  • Both formulations demonstrated high encapsulation rates exceeding 93% and particle sizes below 100 nm.
  • TWRB showed enhanced stability, delaying RB release and improving skin penetration.
  • Both MRSA and Pseudomonas aeruginosa were inhibited, with complete inhibition of P. aeruginosa with TWRB/ST at lower RB concentrations.

Abstract

PURPOSE: To compare the antimicrobial effect of Photodynamic (PT) and Sonodynamic Therapy (ST) applying Rose Bengal (RB) loaded in liposomes, intended for the treatment of skin infections. METHODS: Formulations with standard soy lecithin (TSRB) and water-soluble soy lecithin (TWRB) were prepared and characterized by: (i) FTIR-ATR and DSC, and measuring size, polydispersity index, and zeta potential; (ii) in vitro release and permeation tests, visualizing the distribution of RB in the skin by confocal laser microscopy; (iii) stability tests under different conditions; (iv) occlusion capacity tests; (v) determination of antimicrobial activity against methicillin-resistant Staphylococcus aureus (MRSA) and Pseudomonas aeruginosa; and (vi) cytotoxicity tests with HaCaT keratinocytes. RESULTS: Both formulations exhibited encapsulation rates > 93% and particle sizes 80% in HaCaT keratinocytes treated with TWRB/PT; however, acoustic cavitation caused significant cell detachment, precluding cytotoxicity assessment in ST assays. DISCUSSION: TWRB exhibited good technological and stability properties, capable of delaying RB release while enhancing its penetration into the skin. Although MRSA (Gram-positive) was inhibited, the most interesting results were obtained with P. aeruginosa (a Gram-negative bacterium, difficult to eradicate), as TWRB/ST completely inhibited it at a lower concentration than the RB solution. CONCLUSION: The results, particularly with P. aeruginosa, provide a basis for further studies using this system.

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Cite This Study

Molina-Alejandre et al. (2026) studied this question.

synapsesocial.com/papers/69fbefef164b5133a91a4010https://doi.org/10.2174/0115672018442090260408103550
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