Correlation of increased azithromycin concentrations with phagocyte infiltration into sites of localized infection

A E Girard1, C R Cimochowski, J A Faiella

  • 1Central Research Division, Pfizer Inc., Groton, CT 06340, USA.

Insights

Azithromycin concentrates in host cells, acting as a delivery system to infection sites. Inflammation enhances this drug accumulation, with phagocytes playing a key role in maintaining therapeutic levels.

Area of Science:

  • Pharmacology and Microbiology
  • Infectious Diseases
  • Drug Delivery Systems

Background:

  • Azithromycin is known to accumulate in host cells, particularly phagocytes.
  • This cellular accumulation suggests a potential role in transporting the antibiotic to infection sites.
  • Understanding azithromycin's distribution is crucial for optimizing treatment of localized bacterial infections.

Purpose of the Study:

  • To investigate the hypothesis that host cells, specifically phagocytes, transport azithromycin to localized infection sites.
  • To determine if inflammation influences azithromycin concentration at infection loci.
  • To evaluate the role of cellular components in maintaining drug levels at infection sites.

Main Methods:

  • Utilized established animal models for localized infections: Haemophilus influenzae otitis media in gerbils, Streptococcus pyogenes on a paper disc, and Streptococcus pneumoniae pneumonia in mice.
  • Administered single oral doses of azithromycin at varying times relative to pathogen introduction during inflammatory and non-inflammatory phases.
  • Measured azithromycin concentrations in infected tissues (bulla, disc site, lung) and serum, and analyzed cellular components for drug content.

Main Results:

  • Significantly higher azithromycin concentrations were observed at infected sites compared to non-infected sites when the drug was administered during inflammation.
  • Drug concentrations at infection sites persisted longer than in serum, with cellular components accounting for a substantial portion of the localized drug.
  • The ratio of infection site concentration to serum concentration increased over time, indicating sustained drug presence at the site of infection.

Conclusions:

  • Azithromycin concentrations are elevated at sites of localized infection, particularly in the presence of inflammation.
  • Phagocytic cells are likely key mediators in delivering azithromycin to infection sites and sustaining its concentration.
  • These findings support the role of azithromycin's cellular accumulation in its efficacy against localized bacterial infections.

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