Elucidating the mechanism by which synthetic helper peptides sensitize Pseudomonas aeruginosa to multiple antibiotics

Author:

Xia YushanORCID,Cebrián RubénORCID,Xu Congjuan,Jong Anne deORCID,Wu WeihuiORCID,Kuipers Oscar P.ORCID

Abstract

The emergence and rapid spread of multi-drug resistant (MDR) bacteria pose a serious threat to the global healthcare. There is an urgent need for new antibacterial substances or new treatment strategies to deal with the infections by MDR bacterial pathogens, especially the Gram-negative pathogens. In this study, we show that a number of synthetic cationic peptides display strong synergistic antimicrobial effects with multiple antibiotics against the Gram-negative pathogen Pseudomonas aeruginosa. We found that an all-D amino acid containing peptide called D-11 increases membrane permeability by attaching to LPS and membrane phospholipids, thereby facilitating the uptake of antibiotics. Subsequently, the peptide can dissipate the proton motive force (PMF) (reducing ATP production and inhibiting the activity of efflux pumps), impairs the respiration chain, promotes the production of reactive oxygen species (ROS) in bacterial cells and induces intracellular antibiotics accumulation, ultimately resulting in cell death. By using a P. aeruginosa abscess infection model, we demonstrate enhanced therapeutic efficacies of the combination of D-11 with various antibiotics. In addition, we found that the combination of D-11 and azithromycin enhanced the inhibition of biofilm formation and the elimination of established biofilms. Our study provides a realistic treatment option for combining close-to-nature synthetic peptide adjuvants with existing antibiotics to combat infections caused by P. aeruginosa.

Funder

China Scholarships Council

NACTAR program of Dutch NWO-TTW

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference73 articles.

1. Reflecting on the final report of the O’Neill Review on Antimicrobial Resistance;LJV Piddock;Lancet Infect Dis,2016

2. Antibiotics for emerging pathogens;MA Fischbach;Science,2009

3. The global preclinical antibacterial pipeline;U Theuretzbacher;Nat Rev Microbiol,2020

4. Critical analysis of antibacterial agents in clinical development;U Theuretzbacher;Nat Rev Microbiol,2020

5. Resistance fighters;K Kupferschmidt;Science,2016

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