Liquid crystal nanoparticle platform for increased efficacy of cationic antimicrobials against biofilm infections.


Journal

Nanomedicine : nanotechnology, biology, and medicine
ISSN: 1549-9642
Titre abrégé: Nanomedicine
Pays: United States
ID NLM: 101233142

Informations de publication

Date de publication:
06 2022
Historique:
received: 14 07 2021
revised: 18 11 2021
accepted: 04 02 2022
pubmed: 25 2 2022
medline: 18 5 2022
entrez: 24 2 2022
Statut: ppublish

Résumé

Bacterial biofilm infections tolerate high concentrations of antibiotics and are insidiously challenging to treat. Liquid crystal nanoparticles (LCNPs) advance the efficacy of tobramycin in biofilm-related infections by increasing the penetration of antibiotics across the biofilm matrix. Herewith, we develop the LCNPs as a platform technology, demonstrating that the LCNPs can increase the efficacy of two antibiotic classes (i.e. aminoglycosides and colistin) in P. aeruginosa biofilm infections. In C. elegans, the LCNPs potentiated the antimicrobial effect and significantly improved the survival of the nematodes. In mice with a full-thickness excisional wound, LCNPs were non-toxic and did not impair wound repair. Compared to the unformulated antibiotic treatment, tobramycin-LCNPs reduced the chronic bacterial load by 100-fold in the wound. This was also emulated in an ex vivo P. aeruginosa porcine wound infection model. The LCNPs represent a versatile platform technology that improves the efficacy of cationic antibiotics against biofilm infections utilizing multiple administration routes.

Identifiants

pubmed: 35202839
pii: S1549-9634(22)00022-3
doi: 10.1016/j.nano.2022.102536
pii:
doi:

Substances chimiques

Anti-Bacterial Agents 0
Anti-Infective Agents 0
Cations 0
Tobramycin VZ8RRZ51VK

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

102536

Informations de copyright

Copyright © 2022 Elsevier Inc. All rights reserved.

Auteurs

Chelsea R Thorn (CR)

University of South Australia, Clinical and Health Science, Adelaide, SA, Australia; The Basil Hetzel Institute for Translational Health Research, Woodville, SA, Australia; ARC Centre for Excellence in Bio-Nano Science and Technology, Adelaide, SA, Australia; Biofilm Test Facility, Cancer Research Institute, University of South Australia, Adelaide, SA, Australia.

Zlatko Kopecki (Z)

University of South Australia, Clinical and Health Science, Adelaide, SA, Australia; Future Industries Institute, UniSA, Mawson Lakes, SA, Australia.

Anthony Wignall (A)

University of South Australia, Clinical and Health Science, Adelaide, SA, Australia; ARC Centre for Excellence in Bio-Nano Science and Technology, Adelaide, SA, Australia.

Anita Kral (A)

University of South Australia, Clinical and Health Science, Adelaide, SA, Australia; Centre for Cancer Biology, S.A. Pathology and University of South Australia.

Clive A Prestidge (CA)

University of South Australia, Clinical and Health Science, Adelaide, SA, Australia; ARC Centre for Excellence in Bio-Nano Science and Technology, Adelaide, SA, Australia.

Nicky Thomas (N)

University of South Australia, Clinical and Health Science, Adelaide, SA, Australia; The Basil Hetzel Institute for Translational Health Research, Woodville, SA, Australia; ARC Centre for Excellence in Bio-Nano Science and Technology, Adelaide, SA, Australia; Biofilm Test Facility, Cancer Research Institute, University of South Australia, Adelaide, SA, Australia. Electronic address: nicky.thomas@unisa.edu.au.

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Classifications MeSH