Capsule Independent Antimicrobial Activity Induced by Nanochitosan against Streptococcus pneumoniae

Fulwah Y Alqahtani1, Fadilah S Aleanizy1, Eram El Tahir1

  • 1Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11495, Saudi Arabia.

Polymers
|September 10, 2021
PubMed
Abstract

Insights

Nanochitosan particles (CNPs) show potent anti-pneumococcal activity against Streptococcus pneumoniae, reducing bacterial hemolysis and demonstrating cytocompatibility. These findings highlight CNPs as promising therapeutics for pneumococcal diseases.

Area of Science:

  • Nanotechnology
  • Materials Science
  • Microbiology

Background:

  • *Streptococcus pneumoniae* causes significant global morbidity and mortality from pneumonia and meningitis.
  • Rising antibiotic resistance necessitates novel therapeutic strategies.
  • Chitosan-based nanoparticles (CNPs) offer a potential solution due to their antimicrobial properties.

Purpose of the Study:

  • Prepare and characterize Chitosan nanoparticles (CNPs).
  • Evaluate the antimicrobial activity of CNPs against *Streptococcus pneumoniae* TIGR4 and its capsular mutant.
  • Assess the cytotoxicity and hemolytic effects of CNPs.

Main Methods:

  • CNPs prepared via ion gelation method.
  • Physicochemical characterization: particle size, PDI, zeta potential, and morphology (TEM).
  • Antimicrobial activity assessed using broth and agar dilution methods; cytotoxicity and hemolysis assays performed.

Main Results:

  • Spherical CNPs produced with controlled particle size and PDI.
  • CNPs exhibited significant antibacterial activity against *S. pneumoniae* TIGR4 and mutant (MIC90: 0.5-2.5 mg/mL).
  • CNPs reduced bacterial hemolysis concentration-dependently and were cytocompatible at lower concentrations.

Conclusions:

  • Nanochitosan particles demonstrate efficacy against *Streptococcus pneumoniae*, irrespective of capsule presence.
  • CNPs offer a concentration-dependent reduction in bacterial hemolysis.
  • CNPs exhibit cytocompatibility, highlighting their therapeutic potential for pneumococcal infections.