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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.
Abstract:
Azithromycin reaches high concentrations in phagocytic and other host cells, suggesting that they may transport this agent to specific sites of infection. Models of localized infection (Haemophilus influenzae middle ear infection in gerbils, Streptococcus pyogenes implanted contaminated paper disc and Streptococcus pneumoniae pneumonia in mice) that induced severe inflammatory response after challenge were used to explore this hypothesis. Animals were given a single 100 or 50 mg/kg po dose of azithromycin at various times from 2 to 120 h following introduction of a pathogen or sterile medium. When azithromycin was given during a period of little or no inflammation, there was marginal difference between concentrations found in infected or non-infected sites (bulla, disc, lung). However, when the compound was given during a period of inflammation, considerably higher drug concentrations were found in infected sites than in non-infected sites at 5-24 h after dosing (0.38-0.44 mg/c compared with 0.07-0.14 mg/L of bulla wash; 1.01-1.75 micrograms compared with < or = 0.01-0.03 microgram at the disc site; 1.72-5.28 mg/kg compared with 0.7-1.53 mg/kg of lung). When the observation periods were extended to include 48, 56 or 96 h after dosing, the ratio of azithromycin infection site concentration: serum concentration steadily increased with time in all model systems (middle ear, implanted disc and pneumonia), reflecting the maintenance of concentrations at the sites of infection, while serum concentrations declined. Bioassay of cell pellets and supernatants, obtained from pooled bulla washes of gerbils treated with azithromycin during a period of inflammation, revealed that cellular components accounted for about 75% of the azithromycin detected. These data show that increased azithromycin concentrations occur at sites of localized infection. This correlates with the presence of inflammation and is associated with the cellular components of the inflammatory response. Therefore, phagocytes may be important vehicles for delivering azithromycin to and sustaining azithromycin concentrations at sites of infection.
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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