Meso-substituted cationic 3- and 4-N-Pyridylporphyrins and their Zn(II) derivatives for antibacterial photodynamic therapy

Author:

Gyulkhandanyan Aram G.12,Paronyan Marina H.3,Gyulkhandanyan Anna G.1,Ghazaryan Karapet R.1,Parkhats Marina V.4,Dzhagarov Boris M.4,Korchenova Maria V.5,Lazareva Ekaterina N.56,Tuchina Elena S.5ORCID,Gyulkhandanyan Grigor V.1,Tuchin Valery V.567

Affiliation:

1. H. Buniatyan Institute of Biochemistry, National Academy of Sciences of Armenia, 5/1 Paruir Sevak Street, Yerevan 0014, Armenia

2. INSERM U1204, Université d’Evry val d’Essonne–Université Paris-Saclay, 1 Rue du Père Jarlan, Bâtiment Maupertuis, 91025 Évry-Courcouronnes, France

3. SPC “Armbiotechnology”, National Academy of Sciences of Armenia, 14 Gyurjyan Street, Yerevan 0056, Armenia

4. B. I. Stepanov Institute of Physics, National Academy of Sciences of Belarus, 68-2 Nezavisimosti Avenue, Minsk 220072, Belarus

5. Science Medical Center, Saratov State University, 83 Astrakhanskaya Street, Saratov 410012, Russia

6. Laboratory of Laser Molecular Imaging and Machine Learning (LMIML), National Research Tomsk State University, 36 Lenin Avenue, Tomsk 634050, Russia

7. Laboratory of Laser Diagnostics of Technical and Living Systems, Institute of Precision Mechanics and Control, Russian Academy of Sciences, Saratov 410028, Russia

Abstract

Photodynamic inactivation of microorganisms known as antibacterial photodynamic therapy (APDT) is one of the most promising and innovative approaches for the destruction of pathogenic microorganisms. Among the photosensitizers (PSs), compounds based on cationic porphyrins/metalloporphyrins are most successfully used to inactivate microorganisms. Series of meso-substituted cationic pyridylporphyrins and metalloporphyrins with various peripheral groups in the third and fourth positions of the pyrrole ring have been synthesized in Armenia. The aim of this work was to determine and test the most effective cationic porphyrins and metalloporphyrins with high photoactivity against Gram negative and Gram positive microorganisms. It was shown that the synthesized cationic pyridylporphyrins/metalloporphyrins exhibit a high degree of phototoxicity towards both types of bacteria, including the methicillin-resistant S. aureus strain. Zinc complexes of porphyrins are more phototoxic than metal-free porphyrin analogs. The effectiveness of these Zn–metalloporphyrins on bacteria is consistent with the level of singlet oxygen generation. It was found that the high antibacterial activity of the studied cationic porphyrins/metalloporphyrins depends on four factors: the presence in the porphyrin macrocycle of a positive charge (+4), a central metal atom (Zn[Formula: see text] and hydrophobic peripheral functional groups as well as high values of quantum yields of singlet oxygen. The results indicate that meso-substituted cationic pyridylporphyrins/metalloporphyrins can find wider application in photoinactivation of bacteria than anionic or neutral PSs usually used in APDT.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Biomedical Engineering,Atomic and Molecular Physics, and Optics,Medicine (miscellaneous),Electronic, Optical and Magnetic Materials

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