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Antibiotic-Polyphosphate Nanocomplexes: A Promising System for Effective Biofilm Eradication.
- Source :
-
International journal of nanomedicine [Int J Nanomedicine] 2024 Sep 18; Vol. 19, pp. 9707-9725. Date of Electronic Publication: 2024 Sep 18 (Print Publication: 2024). - Publication Year :
- 2024
-
Abstract
- Purpose: The eradication of bacterial biofilms poses an enormous challenge owing to the inherently low antibiotic susceptibility of the resident microbiota. The complexation of antibiotics with polyphosphate can substantially improve antimicrobial performance.<br />Methods: Nanoparticular complexes of the model drug colistin and polyphosphate (CP-NPs) were developed and characterized in terms of their particle size and morphology, polydispersity index (PDI), zeta potential, and cytotoxicity. Enzyme-triggered monophosphate and colistin release from the CP-NPs was evaluated in the presence of alkaline phosphatase (AP). Subsequently, antimicrobial efficacy was assessed by inhibition experiments on planktonic cultures, as well as time-kill assays on biofilms formed by the model organism Micrococcus luteus .<br />Results: The CP-NPs exhibited a spherical morphology with particle sizes <200 nm, PDI <0.25, and negative zeta potential. They showed reduced cytotoxicity toward two human cell lines and significantly decreased hemotoxicity compared with native colistin. Release experiments with AP verified the enzymatic cleavage of polyphosphate and subsequent release of monophosphate and colistin from CP-NPs. Although CP-NPs were ineffective against planktonic M. luteus cultures, they showed major activity against bacterial biofilms, outperforming native colistin treatment. Strongly elevated AP levels in the biofilm state were identified as a potential key factor for the observed findings.<br />Conclusion: Accordingly, polyphosphate-based nanocomplexes represent a promising tool to tackle bacterial biofilm.<br />Competing Interests: The authors declare that they have no known competing financial interests or personal relationships that could influence the work reported in this study.<br /> (© 2024 To et al.)
- Subjects :
- Humans
Particle Size
Alkaline Phosphatase metabolism
Microbial Sensitivity Tests
Cell Line
Cell Survival drug effects
Biofilms drug effects
Polyphosphates chemistry
Polyphosphates pharmacology
Colistin pharmacology
Colistin chemistry
Anti-Bacterial Agents pharmacology
Anti-Bacterial Agents chemistry
Nanoparticles chemistry
Micrococcus luteus drug effects
Subjects
Details
- Language :
- English
- ISSN :
- 1178-2013
- Volume :
- 19
- Database :
- MEDLINE
- Journal :
- International journal of nanomedicine
- Publication Type :
- Academic Journal
- Accession number :
- 39309185
- Full Text :
- https://doi.org/10.2147/IJN.S473241