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Published on: December 27, 2016
Activity of Norspermidine on Bacterial Biofilms of Multidrug-Resistant Clinical Isolates Associated with Persistent
Anthony P Cardile1, Ronald L Woodbury2, Carlos J Sanchez2
1Infectious Disease Service, Department of Medicine, San Antonio Military Medical Center, JBSA Fort Sam Houston, San Antonio, TX, USA.
Abstract:
Biofilm formation is a major virulence factor for numerous pathogenic bacteria and is cited as a central event in the pathogenesis of chronic human infections, which is in large part due to excessive extracellular matrix secretion and metabolic changes that occur within the biofilm rendering them highly tolerant to antimicrobial treatments. Polyamines, including norspermidine, play central roles in bacterial biofilm development, but have also recently been shown to inhibit biofilm formation in select strains of various pathogenic bacteria. The aim of this study was to evaluate in vitro the biofilm dispersive and inhibitory activities of norspermidine against multidrug-resistant clinical isolates of Acinetobacter baumannii(n = 4), Klebsiella pneumoniae (n = 3), Pseudomonas aeruginosa (n = 5) and Staphylococcus aureus (n = 4) associated with chronic extremity wound infections using the semi-quantitative 96-well plate method and confocal laser microscopy. In addition to the antibiofilm activity, biocompatibility of norspermidine was also evaluated by measuring toxicity in vitro to human cell lines and whole porcine tissue explants using MTT viability assay and histological analysis. Norspermidine (5-20 mM) had variable dispersive and inhibitory activity on biofilms which was dependent on both the strain and species. Of the clinical bacterial species evaluated herein, A. baumannii isolates were the most sensitive to the effect of norspermidine, which was in part due to the inhibitory effects of norspermidine on bacterial motility and expression of genes involved in the production of homoserine lactones and quorum sensing molecules both essential for biofilm formation. Importantly, exposure of cell lines and whole tissues to norspermidine for prolonged periods of time (≥24 h) was observed to reduce viability and alter tissue histology in a time and concentration dependent manner, with 20 mM exposure having the greatest negative effects on both tissues and individual cell lines. Collectively our findings demonstrate that, similar to other polyamines, norspermidine displays both inhibitory and dispersive activities on biofilms of clinical multidrug-resistant bacterial isolates, in particular for strains of A. baumannii. Additionally our findings suggest that direct application may be considered on tissues, albeit for limited exposure times.
Insights
Norspermidine shows variable biofilm inhibitory and dispersive effects against multidrug-resistant bacteria, particularly Acinetobacter baumannii. Its application on tissues requires careful consideration of exposure time due to potential toxicity.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Antimicrobial Research
Background:
- Biofilm formation is a key virulence factor in chronic infections, increasing bacterial tolerance to antibiotics.
- Polyamines, such as norspermidine, influence bacterial biofilm development and can inhibit biofilm formation.
- Multidrug-resistant bacteria in chronic wounds pose a significant clinical challenge.
Purpose of the Study:
- To evaluate the in vitro biofilm inhibitory and dispersive activities of norspermidine against clinical isolates of multidrug-resistant bacteria.
- To assess the biocompatibility and toxicity of norspermidine on human cell lines and porcine tissue explants.
- To investigate the mechanisms underlying norspermidine's antibiofilm activity, focusing on Acinetobacter baumannii.
Main Methods:
- Semi-quantitative 96-well plate method and confocal laser microscopy were used to assess antibiofilm activity.
- MTT viability assay and histological analysis were employed to evaluate norspermidine's toxicity to human cell lines and porcine tissues.
- Gene expression analysis was performed to understand norspermidine's impact on bacterial motility and quorum sensing.
Main Results:
- Norspermidine exhibited variable biofilm inhibitory and dispersive activity, dependent on bacterial strain and species.
- Acinetobacter baumannii isolates were most sensitive to norspermidine, with reduced motility and quorum sensing gene expression observed.
- Prolonged exposure (≥24 h) to higher concentrations (20 mM) of norspermidine reduced cell viability and altered tissue histology.
Conclusions:
- Norspermidine demonstrates inhibitory and dispersive activities against biofilms of clinical multidrug-resistant bacteria, especially Acinetobacter baumannii.
- Norspermidine's antibiofilm effects may be linked to reduced bacterial motility and quorum sensing.
- Direct application of norspermidine on tissues is feasible but necessitates controlled exposure times to mitigate toxicity.
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