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Antimicrobial Activity of Nitric Oxide Delivery Nanoparticles for Lipopolysaccharides-Deficient Gram-Negative Bacteria

  • Xiangyi Huang
  • , Xiangfeng Lai
  • , Lei Yu
  • , Hsien Yi Hsu
  • , Anton P. Le Brun
  • , Chun Ming Wu
  • , Benjamin W. Muir
  • , Jacinta F. White
  • , Yajun Wang
  • , Sarigama Rajesh
  • , Chenguang Ding
  • , Philip Wai Hong Chan
  • , Hsin Hui Shen
  • Monash University
  • City University of Hong Kong
  • Australian Nuclear Science and Technology Organisation
  • CSIRO
  • Wenzhou University
  • The First Affiliated Hospital of Xi’an Jiaotong University

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

The rapid emergence of antimicrobial resistant Gram-negative bacteria compromises current antibiotic efficacy, including the last-resort antibiotic polymyxins, emphasizing the urgent need for novel therapeutic strategies. Nanoscale-based antimicrobials exhibit potential as an alternative treatment strategy. In this study, four furoxan-based nitric oxide (NO)-releasing nanoparticles (NPs) were prepared and their antimicrobial efficacy was tested against different Gram-negative bacteria, including: Acinetobacter baumannii, Pseudomonas aeruginosa, Klebsiella pneumoniae, and Escherichia coli via minimum inhibitory testing, where NPs exhibited selective activity against lipopolysaccharide (LPS)-deficient A. baumannii strains and LPS-truncated strains tested. Advanced microscopic techniques and mechanistic investigations using model membranes mimicking the LPS-deficient A. baumannii membrane and LPS-containing membrane, via neutron reflectometry and small-angle neutron scattering, indicated that the NPs specifically destabilize the LPS-deficient A. baumannii membrane, leading to the release of cellular content. This work provides mechanistic insight into the selective activity of the NPs against LPS-deficient A. baumannii and their lack of efficacy in strains with LPS, highlighting membrane-level determinants that may inform future antimicrobials development.

Original languageEnglish
Pages (from-to)4139-4152
Number of pages14
JournalACS Biomaterials Science and Engineering
Volume11
Issue number7
DOIs
StatePublished - 14 Jul 2025

Keywords

  • LPS-deficient A. baumannii strains
  • antimicrobial resistance
  • nanoparticles
  • nitric oxide

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