Antibacterial Free Fatty Acids and Monoglycerides: Biological Activities, Experimental Testing, and Therapeutic Applications
Антибактериальные свободные жирные кислоты и моноглицериды: биологическая активность, экспериментальное исследование и терапевтическое применение
2018-04-08
SCID: 54.1/dy92d2vd
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antibacterial mechanismsantimicrobial lipidsfree fatty acidsmonoglyceridesphospholipid membranes
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Abstract (AI)
Antimicrobial lipids such as fatty acids and monoglycerides are promising antibacterial agents that destabilize bacterial cell membranes, causing a wide range of direct and indirect inhibitory effects. The goal of this review is to introduce the latest experimental approaches for characterizing how antimicrobial lipids destabilize phospholipid membranes within the broader scope of introducing current knowledge about the biological activities of antimicrobial lipids, testing strategies, and applications for treating bacterial infections. To this end, a general background on antimicrobial lipids, including structural classification, is provided along with a detailed description of their targeting spectrum and currently understood antibacterial mechanisms. Building on this knowledge, different experimental approaches to characterize antimicrobial lipids are presented, including cell-based biological and model membrane-based biophysical measurement techniques. Particular emphasis is placed on drawing out how biological and biophysical approaches complement one another and can yield mechanistic insights into how the physicochemical properties of antimicrobial lipids influence molecular self-assembly and concentration-dependent interactions with model phospholipid and bacterial cell membranes. Examples of possible therapeutic applications are briefly introduced to highlight the potential significance of antimicrobial lipids for human health and medicine, and to motivate the importance of employing orthogonal measurement strategies to characterize the activity profile of antimicrobial lipids.
Key Findings
1
Antimicrobial free fatty acids and monoglycerides destabilize bacterial phospholipid membranes, producing diverse direct and indirect antibacterial effects.
2
Antimicrobial lipid activity depends on physicochemical properties, molecular self-assembly, and concentration-dependent interactions with model and bacterial membranes.
3
Cell-based biological assays and model-membrane biophysical measurements provide complementary insights into lipid-mediated membrane destabilization.
4
Orthogonal experimental strategies are important for defining antimicrobial lipid activity profiles and evaluating their potential therapeutic applications against bacterial infections.
5
The review classifies antimicrobial lipids and summarizes their bacterial targeting spectra and currently understood antibacterial mechanisms.
Research Object
Antimicrobial lipids (free fatty acids and monoglycerides)
Research Subject
their antibacterial biological activities and membrane-destabilizing mechanisms, including physicochemical-property-dependent self-assembly and concentration-dependent interactions
Publication Details
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2018-04-08
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