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.

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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