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.

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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