Novel insights in antimicrobial and immunomodulatory mechanisms of action of PepBiotics CR-163 and CR-172

Publication date

2022-09

Authors

van Os, Nico
Javed, AliISNI 0000000523880319
Broere, FemkeORCID 0000-0001-9343-0111ISNI 0000000388807652
van Dijk, AlbertISNI 0000000395107929
Balhuizen, Melanie DISNI 0000000492796412
van Eijk, M.ISNI 0000000393250457
Rooijakkers, Suzan H M
Bardoel, Bart W
Heesterbeek, Dani A C
Haagsman, H.P.ISNI 0000000395332181

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Objectives: Our group recently developed a new group of antimicrobial peptides termed PepBiotics, of which peptides CR-163 and CR-172 showed optimized antibacterial activity against Pseudomonas aeruginosa and Staphylococcus aureus without inducing antimicrobial resistance. In this study, the antibacterial mechanism of action and the immunomodulatory activity of these two PepBiotics was explored. Methods: RAW264.7 cells were used to determine the ability of PepBiotics to neutralize Lipopolysaccharide (LPS)-and Lipoteichoic acid (LTA)-induced activation of macrophages. Isothermal titration calorimetry and competition assays with dansyl-labeled polymyxin B determined binding characteristics to LPS and LTA. Combined bacterial killing with subsequent macrophage activation assays was performed to determine so-called ‘silent killing’. Finally, flow cytometry of peptide-treated genetically engineered Escherichia coli expressing Green Fluorescent Protein (GFP) and mCherry in the cytoplasm and periplasm, respectively, further established the antimicrobial mechanism of PepBiotics. Results: Both CR-163 and CR-172 were shown to have broad-spectrum activity against ESKAPE pathogens and E. coli using a membranolytic mechanism of action. PepBiotics could exothermically bind LPS/LTA and were able to replace polymyxin B. Finally, it was demonstrated that bacteria killed by PepBiotics were less prone to stimulate immune cells, contrary to gentamicin and heat-killed bacteria that still elicited a strong immune response. Conclusions: These studies highlight the multifunctional nature of the two peptide antibiotics as both broad-spectrum antimicrobial and immunomodulator. Their ability to kill bacteria and reduce unwanted subsequent immune activation is a major advantage and highlights their potential for future therapeutic use.

Keywords

Antimicrobial peptide, Antimicrobial resistance, Immunomodulation, LPS neutralization, Membrane, Peptide therapeutic, Microbiology, Immunology and Allergy, Immunology, Microbiology (medical)

Citation

van Os, N, Javed, A, Broere, F, van Dijk, A, Balhuizen, M D, van Eijk, M, Rooijakkers, S H M, Bardoel, B W, Heesterbeek, D A C, Haagsman, H P & Veldhuizen, E J A 2022, 'Novel insights in antimicrobial and immunomodulatory mechanisms of action of PepBiotics CR-163 and CR-172', Journal of Global Antimicrobial Resistance, vol. 30, pp. 406-413. https://doi.org/10.1016/j.jgar.2022.07.009