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How Oxygen Availability Affects the Antimicrobial Efficacy of Host Defense Peptides: Lessons Learned from Studying
Adenrele Oludiran1, David S Courson2, Malia D Stuart3
1Department of Chemistry and Biochemistry, Old Dominion University, Norfolk, VA 23529, USA. aolud001@odu.edu.
Abstract:
The development of new therapeutic options against Clostridioides difficile (C. difficile) infection is a critical public health concern, as the causative bacterium is highly resistant to multiple classes of antibiotics. Antimicrobial host-defense peptides (HDPs) are highly effective at simultaneously modulating the immune system function and directly killing bacteria through membrane disruption and oxidative damage. The copper-binding HDPs piscidin 1 and piscidin 3 have previously shown potent antimicrobial activity against a number of Gram-negative and Gram-positive bacterial species but have never been investigated in an anaerobic environment. Synergy between piscidins and metal ions increases bacterial killing aerobically. Here, we performed growth inhibition and time-kill assays against C. difficile showing that both piscidins suppress proliferation of C. difficile by killing bacterial cells. Microscopy experiments show that the peptides accumulate at sites of membrane curvature. We find that both piscidins are effective against epidemic C. difficile strains that are highly resistant to other stresses. Notably, copper does not enhance piscidin activity against C. difficile. Thus, while antimicrobial activity of piscidin peptides is conserved in aerobic and anaerobic settings, the peptide-copper interaction depends on environmental oxygen to achieve its maximum potency. The development of pharmaceuticals from HDPs such as piscidin will necessitate consideration of oxygen levels in the targeted tissue.
Insights
Piscidin peptides effectively kill Clostridioides difficile bacteria, even antibiotic-resistant strains. Their antimicrobial activity is maintained in anaerobic conditions, but copper synergy is lost without oxygen.
Area of Science:
- Microbiology
- Infectious Diseases
- Drug Discovery
Background:
- Clostridioides difficile infection is a major public health threat due to antibiotic resistance.
- Antimicrobial host-defense peptides (HDPs) offer a dual approach: immune modulation and direct bacterial killing.
- Piscidins are copper-binding HDPs with known activity against various bacteria, but their efficacy in anaerobic environments was unexplored.
Purpose of the Study:
- To investigate the antimicrobial activity of piscidin 1 and piscidin 3 against C. difficile.
- To determine if piscidins maintain efficacy in anaerobic conditions.
- To assess the role of copper in enhancing piscidin activity against C. difficile.
Main Methods:
- Growth inhibition assays
- Time-kill assays
- Microscopy to observe peptide localization
- Testing against epidemic C. difficile strains
Main Results:
- Both piscidin 1 and 3 suppressed C. difficile proliferation by killing bacterial cells.
- Peptides were observed to accumulate at sites of membrane curvature.
- Piscidins were effective against highly stress-resistant epidemic strains.
- Copper did not enhance piscidin activity against C. difficile.
Conclusions:
- Piscidins exhibit conserved antimicrobial activity against C. difficile in both aerobic and anaerobic settings.
- The synergistic effect of copper with piscidins is oxygen-dependent.
- Developing piscidin-based therapeutics requires consideration of oxygen levels in target tissues.
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