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Relationship of Cytotoxic and Antimicrobial Effects of Triphenylphosphonium Conjugates with Various Quinone Derivatives.

Authors :
Nazarov PA
Zinovkina LA
Brezgunova AA
Lyamzaev KG
Golovin AV
Karakozova MV
Kotova EA
Plotnikov EY
Zinovkin RA
Skulachev MV
Antonenko YN
Source :
Biochemistry. Biokhimiia [Biochemistry (Mosc)] 2024 Feb; Vol. 89 (2), pp. 212-222.
Publication Year :
2024

Abstract

Quinone derivatives of triphenylphosphonium have proven themselves to be effective geroprotectors and antioxidants that prevent oxidation of cell components with participation of active free radicals - peroxide (RO <subscript>2</subscript> ·), alkoxy (RO·), and alkyl (R·) radicals, as well as reactive oxygen species (superoxide anion, singlet oxygen). Their most studied representatives are derivatives of plastoquinone (SkQ1) and ubiquinone (MitoQ), which in addition to antioxidant properties also have a strong antibacterial effect. In this study, we investigated antibacterial properties of other quinone derivatives based on decyltriphenylphosphonium (SkQ3, SkQT, and SkQThy). We have shown that they, just like SkQ1, inhibit growth of various Gram-positive bacteria at micromolar concentrations, while being less effective against Gram-negative bacteria, which is associated with recognition of the triphenylphosphonium derivatives by the main multidrug resistance (MDR) pump of Gram-negative bacteria, AcrAB-TolC. Antibacterial action of SkQ1 itself was found to be dependent on the number of bacterial cells. It is important to note that the cytotoxic effect of SkQ1 on mammalian cells was observed at higher concentrations than the antibacterial action, which can be explained by (i) the presence of a large number of membrane organelles, (ii) lower membrane potential, (iii) spatial separation of the processes of energy generation and transport, and (iv) differences in the composition of MDR pumps. Differences in the cytotoxic effects on different types of eukaryotic cells may be associated with the degree of membrane organelle development, energy status of the cell, and level of the MDR pump expression.

Details

Language :
English
ISSN :
1608-3040
Volume :
89
Issue :
2
Database :
MEDLINE
Journal :
Biochemistry. Biokhimiia
Publication Type :
Academic Journal
Accession number :
38622091
Full Text :
https://doi.org/10.1134/S0006297924020032